IP Library Assignment 066957/0745
Patent Assignment
Reel/Frame 066957/0745

Assignment of Assignor's Interest

Recorded: 2024-02-28 Pages: 42
Assignor
GLOBAL GRAPHENE GROUP, INC.
Executed: 2023-02-08
Assignee
HONEYCOMB BATTERY COMPANY
1240 MCCOOK AVENUE, DAYTON, OHIO, 45404
Covered Properties (391)
Solvent-free process based graphene electrode for energy storage devices
Application: 13/507,739 →
Publication: US US20140030590A1
Process for Producing Lithium Batteries Having an Ultra-High Energy Density
Application: 16/519,236 →
Publication: US US20190363394A1
Continuous Process for Producing Electrodes and Alkali Metal Batteries Having Ultra-High Energy Densities
Application: 17/452,840 →
Publication: US US20220045311A1
Production Process for Alkali Metal-Sulfur Batteries Having High Volumetric and Gravimetric Energy Densities
Application: 16/922,987 →
Publication: US US20200343593A1
Battery Having a Low Output Voltage
Application: 17/122,499 →
Publication: US US20210111403A1
Process for Producing Flexible and Shape-Conformal Cable-Type Alkali Metal Batteries
Application: 15/384,781 →
Publication: US US20180175434A1
Process for Flexible and Shape-Conformal Cable-Shape Alkali Metal-Sulfur Batteries
Application: 15/391,379 →
Publication: US US20180183052A1
Graphene-Enabled Metal Fluoride and Metal Chloride Cathode Active Materials for Lithium Batteries
Application: 15/412,852 →
Publication: US US20180212247A1
Elastic Polymer Composite Binder for Lithium Battery and Method of Manufacturing
Application: 17/063,666 →
Publication: US US20210098778A1
Polymer Binder for Lithium Battery and Method of Manufacturing
Application: 17/064,975 →
Publication: US US20210098790A1
Polymer Binder for Lithium Battery and Method of Manufacturing
Application: 17/060,820 →
Publication: US US20210020920A1
Multivalent Metal Ion Battery and Manufacturing Method
Application: 15/463,543 →
Publication: US US20180269478A1
Multivalent Metal Ion Battery Having a Cathode of Recompressed Graphite Worms and Manufacturing Method
Application: 16/787,534 →
Publication: US US20200251735A1
Non-flammable Quasi-Solid Electrolyte and Lithium Secondary Batteries Containing Same
Application: 15/468,080 →
Publication: US US20180277913A1
Encapsulated Anode Active Material Particles, Lithium Secondary Batteries Containing Same, and Method of Manufacturing
Application: 15/478,125 →
Publication: US US20180287142A1
Rolled Alkali Metal Batteries and Production Process
Application: 15/589,629 →
Publication: US US20180323474A1
Continuous Process for Producing Electrochemical Cells
Application: 15/688,156 →
Publication: US US20190067732A1
Surface-Stabilized Cathode Active Material Particles, Lithium Secondary Batteries Containing Same, and Method of Manufacturing
Application: 15/785,351 →
Publication: US US20190115591A1
Graphene Foam-Protected Niobium-Based Composite Metal Oxide Anode Active Materials for Lithium Batteries
Application: 15/822,871 →
Publication: US US20190165363A1
Method of Producing Particulate Electrode Materials for Alkali Metal Batteries
Application: 15/860,176 →
Publication: US US20190173079A1
Elastomer Composite-Encapsulated Particles of Anode Active Materials for Lithium Batteries
Application: 15/903,788 →
Publication: US US20190267662A1
Method of Producing Elastomer Composite-Encapsulated Particles of Anode Active Materials for Lithium Batteries
Application: 15/903,808 →
Publication: US US20190267663A1
Production Process for a Graphene Foam-Protected Selenium Cathode and an Alkali Metal-Selenium Secondary Battery Containing Same
Application: 15/948,343 →
Publication: US US20190312261A1
Production Process for Graphene-Enabled Selenium Cathode Active Material for an Alkali Metal-Selenium Secondary Battery
Application: 15/948,385 →
Publication: US US20190312267A1
Surface-Stabilized Selenium Particles, Alkali Metal-Selenium Secondary Battery Containing Same, and Method of Manufacturing
Application: 15/951,498 →
Publication: US US20190319262A1
Alkali Metal-Selenium Secondary Battery Containing a Cathode of Protected Selenium
Application: 15/952,532 →
Publication: US US20190319263A1
Selenium Loaded Mesoporous Carbon Cathode for Alkali Metal-Selenium Secondary Battery
Application: 15/956,312 →
Publication: US US20190326587A1
Method of Improving Fire-Resistance of a Lithium Battery
Application: 15/991,585 →
Publication: US US20190372174A1
Method of Improving Cycle-Life of a Lithium Metal Secondary Battery
Application: 16/014,623 →
Publication: US US20190393508A1
Method of Extending Cycle-Life of a Lithium Metal Secondary Battery
Application: 16/113,676 →
Publication: US US20190393496A1
Method of Improving Anode Stability in a Lithium Metal Secondary Battery
Application: 16/120,875 →
Publication: US US20190393486A1
Method of Protecting the Lithium Anode Layer in a Lithium Metal Secondary Battery
Application: 16/123,218 →
Publication: US US20190393482A1
Method of Improving the Cycle Stability and Energy Density of a Lithium Metal Secondary Battery
Application: 16/166,574 →
Publication: US US20190393542A1
Fast-Chargeable Lithium Battery Electrodes
Application: 16/038,798 →
Publication: US US20200028205A1
Method of Improving Fast-Chargeability of a Lithium-Ion Battery
Application: 16/038,814 →
Publication: US US20200028147A1
Method of Producing Protected Particles of Cathode Active Materials for Lithium Batteries
Application: 17/646,236 →
Publication: US US20220123321A1
Electrochemically Stable Anode Particulates for Lithium Secondary Batteries and Method of Production
Application: 16/160,257 →
Publication: US US20200119337A1
Electrochemically Stable Anode Particulates for Lithium Secondary Batteries
Application: 16/238,052 →
Publication: US US20200119353A1
Porous Graphene Particulate-Protected Anode Active Materials for Lithium Batteries
Application: 16/163,955 →
Publication: US US20200127277A1
Method of Improving the Charge/Discharge Cycle Life and Safety of an Alkali Metal-Sulfur Secondary Battery
Application: 16/241,186 →
Publication: US US20200220196A1
Process for Producing Graphene/Silicon Nanowire Hybrid Material for a Lithium-Ion Battery
Application: 16/246,868 →
Publication: US US20200227734A1
Graphene/Silicon Nanowire Hybrid Material for a Lithium-Ion Battery
Application: 16/246,896 →
Publication: US US20200227730A1
Process for Producing Semiconductor Nanowires and Nanowire-Graphene Hybrid Particulates
Application: 16/250,559 →
Publication: US US20200235380A1
Method of Producing Graphene-Carbon Hybrid Foam-Protected Anode Active Material Coating for Lithium-Ion Batteries
Application: 16/252,817 →
Publication: US US20200235393A1
Method of Improving Cycle Life of a Rechargeable Lithium Metal Battery
Application: 16/256,346 →
Publication: US US20200243838A1
Process for Producing Metal Nanowires and Nanowire-Graphene Hybrid Particulates
Application: 16/258,854 →
Publication: US US20200243844A1
Chemical-Free Production Method of Graphene-Encapsulated Electrode Active Material Particles for Battery Applications
Application: 16/277,395 →
Publication: US US20200266426A1
Particulates of Graphene/Carbon-Encapsulated Alkali Metal, Electrodes, and Alkali Metal Battery
Application: 16/288,949 →
Publication: US US20200280054A1
Process for Producing Particulates of Graphene/Carbon-Encapsulated Alkali Metal, Electrodes, and Alkali Metal Battery
Application: 16/288,968 →
Publication: US US20200280055A1
Process for Producing Porous Particulates of Graphene Shell-Protected Alkali Metal, Electrodes, and Alkali Metal Battery
Application: 16/294,383 →
Publication: US US20200287207A1
Process for Producing Semiconductor Nanowires and Carbon/Semiconductor Nanowire Hybrid Materials
Application: 16/298,199 →
Publication: US US20200295356A1
Method of Producing Graphene-Encapsulated Graphite-Supported Anode Active Material for Lithium-Ion Batteries
Application: 16/364,218 →
Publication: US US20200313162A1
Graphene-Encapsulated Graphite-Supported Anode Active Material for Lithium-Ion Batteries
Application: 16/364,220 →
Publication: US US20200313170A1
Method of Producing Conducting Polymer Network-Enabled Particulates of Anode Active Material Particles for Lithium-Ion Batteries
Application: 16/380,336 →
Publication: US US20200328407A1
Conducting Polymer Network-Enabled Particulates of Anode Active Material Particles for Lithium-Ion Batteries
Application: 16/380,341 →
Publication: US US20200328403A1
Particulates of Conducting Polymer Network-Protected Anode Active Material Particles for Lithium-Ion Batteries
Application: 16/390,592 →
Publication: US US20200335792A1
Lithium Metal Secondary Battery Containing a Conducting Polymer Network-Based Anode-Protecting Layer
Application: 16/404,109 →
Publication: US US20200358090A1
Method of Improving the Cycle Stability of Lithium Metal Secondary Batteries
Application: 16/404,111 →
Publication: US US20200358141A1
Protected Anode Active Material Particles for Rechargeable Lithium Batteries
Application: 16/403,820 →
Publication: US US20200358081A1
Method of Producing Protected Anode Active Material Particles for Rechargeable Lithium Batteries
Application: 16/403,826 →
Publication: US US20200358088A1
Alkali Metal-Sulfur Secondary Battery Containing Conducting Polymer Network-Protected Cathode Material Particulates
Application: 16/407,731 →
Publication: US US20200358084A1
Conducting Polymer Network-Based Cathode-Protecting Layer for Lithium Metal Secondary Battery
Application: 16/411,645 →
Publication: US US20200365902A1
Prelithiated Anode Active Material Particles for Lithium-Ion Batteries and Production Method
Application: 16/505,021 →
Publication: US US20210013490A1
Fast-Charging Battery and Method of Operating Same
Application: 16/513,090 →
Publication: US US20210021003A1
Temperature-Regulated Battery System and Method of Operating Same
Application: 16/515,652 →
Publication: US US20210021001A1
Electrochemically Stable Anode Active Material for Lithium-ion Batteries and Production Method
Application: 16/538,253 →
Publication: US US20210050597A1
Production Process for Graphene-Enabled Bi-Polar Electrode and Battery Containing Same
Application: 16/580,334 →
Publication: US US20210091368A1
Graphene-Encapsulated Graphene-Supported Phosphorus-Based Anode Active Material for Lithium-Ion or Sodium-ion Batteries
Application: 16/673,594 →
Publication: US US20210135219A1
Metal-Containing Graphene Balls as an Anode Active Material for an Alkali Metal Battery
Application: 16/685,543 →
Publication: US US20210151741A1
Porous Graphene/Carbon Composite Balls for an Alkali Metal Battery Anode
Application: 16/773,227 →
Publication: US US20210234167A1
Conducting Polymer Network-Protected Nanowires of an Anode Active Material for Lithium-Ion Batteries
Application: 16/810,163 →
Publication: US US20210280871A1
Carbon- and Graphene-Protected Cathode Active Materials for Lithium-Ion Cells
Application: 16/817,883 →
Publication: US US20210288314A1
Lithium Multiple Metal Oxide-Based Cathode Active Materials for Lithium Secondary Batteries
Application: 16/818,036 →
Publication: US US20210288321A1
Conducting Polymer Network-Protected Cathode Active Materials for Lithium Secondary Batteries
Application: 16/824,039 →
Publication: US US20210296650A1
Battery Cooling System and Method of Operating Same
Application: 16/827,067 →
Publication: US US20210296716A1
Graphitic Film-Enabled Battery Cooling System and Method of Operating Same
Application: 16/833,616 →
Publication: US US20210305639A1
Graphene-Enabled Battery Fast-Charging and Cooling System and Method of Operating Same
Application: 16/837,569 →
Publication: US US20210313634A1
Method of Producing Non-Flammable Quasi-Solid Electrolyte and a Quasi-Solid Electrolyte/Separator Layer for Use in a Lithium Battery
Application: 16/861,495 →
Publication: US US20210344038A1
Method of Producing a Lithium Battery Cell Containing a Non-Flammable Quasi-Solid Electrolyte
Application: 16/861,475 →
Publication: US US20210344035A1
Method and Apparatus for Forming a Non-Flammable Quasi-Solid Electrolyte in a Lithium Battery
Application: 16/861,485 →
Publication: US US20210344037A1
Conducting Polymer Network-Protected Phosphorus Anode Active Material for Lithium-Ion or Sodium-Ion Batteries
Application: 16/869,279 →
Publication: US US20210351409A1
Process for Producing Graphene-Protected Metal Foil Current Collector for a Battery or Supercapacitor
Application: 16/871,390 →
Publication: US US20210351391A1
Conducting Composite Current Collector for a Battery or Supercapacitor and Production Process
Application: 16/871,401 →
Publication: US US20210351413A1
Conducting Polymer Network/Graphene-Protected Negative Electrode for a Lithium-Ion Battery
Application: 15/930,179 →
Publication: US US20210359292A1
Conducting Polymer Network/Expanded Graphite-Enabled Negative Electrode for a Lithium-Ion Battery
Application: 16/878,282 →
Publication: US US20210367229A1
Battery Cooling and Fire Protection System and Method of Operating Same
Application: 16/883,949 →
Publication: US US20210376409A1
Battery Module or Pack with a Distributed Cooling and Fire Protection System and Method of Operating Same
Application: 16/899,026 →
Publication: US US20210391611A1
Rolled 3D Aluminum Secondary Batteries
Application: 16/927,404 →
Publication: US US20220013788A1
Graphene-Infiltrated Porous Anode Active Material Particles for Rechargeable Lithium Batteries
Application: 17/005,915 →
Publication: US US20220069281A1
Graphene-Protected Lithiophilic or Nathiophilic Metal Anode for an Alkali Metal Battery
Application: 17/005,609 →
Publication: US US20220069313A1
Flame-Resistant Quasi-Solid Hybrid Electrolyte for Safe Lithium Batteries and Production Method
Application: 17/009,278 →
Publication: US US20220069348A1
Flame-Resistant Quasi-Solid Hybrid Electrolyte for Safe Anode-Less Lithium Batteries and Production Method
Application: 17/014,649 →
Publication: US US20220077490A1
Electrode Structures for Lithium Batteries
Application: 17/063,567 →
Publication: US US20220109142A1
Elastic Polymer Matrix-Protected Particles of Anode Active Materials for Lithium Batteries and Method of Manufacturing
Application: 17/069,405 →
Publication: US US20220115639A1
Lithium-Protecting Polymer Layer for an Anode-Less Lithium Metal Secondary Battery and Manufacturing Method
Application: 17/089,230 →
Publication: US US20220140348A1
Graphene Foam-Based Protective Layer for an Anode-Less Alkali Metal Battery
Application: 17/102,585 →
Publication: US US20220166029A1
Air-Stable Particulates of Anode Active Materials for Lithium Batteries
Application: 17/109,692 →
Publication: US US20220173385A1
Lithium-Protecting Polymer Composite Layer for an Anode-Less Lithium Metal Secondary Battery and Manufacturing Method
Application: 17/110,874 →
Publication: US US20220181637A1
Elastic Crosslinked Polymer-Encapsulated Anode Particles for Lithium Batteries and Method of Manufacturing
Application: 17/118,980 →
Publication: US US20220190322A1
Lithium-Protecting Polymer Composite Layer for a Lithium Metal Secondary Battery and Manufacturing Method
Application: 17/121,435 →
Publication: US US20220190346A1
Lithium Ion-Permeable Separator for a Lithium Secondary Battery and Manufacturing Method
Application: 17/121,456 →
Publication: US US20220190437A1
Multi-Functional Separator for a Lithium Secondary Battery and Manufacturing Method
Application: 17/122,997 →
Publication: US US20220190438A1
Elastic Network Polymer-Encapsulated Anode Particles for Lithium Batteries and Method of Manufacturing
Application: 17/128,798 →
Publication: US US20220199977A1
Multi-Functional Elastic Polymer Layer for a Lithium Secondary Battery and Manufacturing Method
Application: 17/129,127 →
Publication: US US20220200094A1
Flame-Resistant Quasi-Solid Electrolyte for Lithium-Ion and Lithium Metal Batteries and Production Method
Application: 17/144,754 →
Publication: US US20220223917A1
High-Elasticity Polymer for Lithium Metal Protection, Lithium Secondary Battery and Manufacturing Method
Application: 17/147,180 →
Publication: US US20220223926A1
Quasi-Solid and Solid-State Electrolyte for Lithium-Ion and Lithium Metal Batteries and Manufacturing Method
Application: 17/151,330 →
Publication: US US20220231333A1
Flame-Resistant Quasi-Solid and Solid-State Electrolytes, Lithium Batteries and Manufacturing Method
Application: 17/155,385 →
Publication: US US20220238914A1
Flame-Resistant Electrolyte Compositions, Quasi-Solid and Solid-State Electrolytes, and Lithium Batteries
Application: 17/157,331 →
Publication: US US20220238915A1
Flame-Resistant Electrolyte Compositions from Phosphonate Vinyl Monomers, Quasi-Solid and Solid-State Electrolytes, and Lithium Batteries
Application: 17/159,841 →
Publication: US US20220238916A1
Phosphazene Compound-Based Electrolyte Compositions, Quasi-Solid and Solid-State Electrolytes, and Lithium Batteries
Application: 17/164,912 →
Publication: US US20220255129A1
Phosphazene Compound-Based Elastic Polymer-Encapsulated Anode Particles for Lithium Batteries and Method of Manufacturing
Application: 17/166,026 →
Publication: US US20220246936A1
Thermally Stable Elastic Polymer-Encapsulated Anode Particles for Lithium Batteries and Method of Manufacturing
Application: 17/167,700 →
Publication: US US20220246915A1
Elastic Flame-Retardant Polymer-Encapsulated Anode Particles for Lithium Batteries and Method of Manufacturing
Application: 17/167,677 →
Publication: US US20220246937A1
High-Elasticity Phosphazene Polymer for Lithium Metal Protection, Lithium Secondary Battery and Manufacturing Method
Application: 17/170,283 →
Publication: US US20220255147A1
Flame-Retardant High-Elasticity Polymer for Lithium Metal Protection, Lithium Secondary Battery and Manufacturing Method
Application: 17/170,287 →
Publication: US US20220255080A1
Solid-State Medium for Lithium Ion Transport, Lithium Batteries and Manufacturing Method
Application: 17/175,954 →
Publication: US US20220263070A1
Lithium Batteries Containing Flame-Resistant Quasi-Solid or Solid-State Electrolytes and Manufacturing Method
Application: 17/182,763 →
Publication: US US20220271335A1
Bipolar Electrodes Containing Flame-Resistant Quasi-Solid or Solid-State Electrolyte, Bipolar Lithium Batteries, and Manufacturing Method
Application: 17/197,148 →
Publication: US US20220293958A1
Flame-Resistant Electrodes for Lithium Batteries Containing Quasi-Solid or Solid-State Electrolytes and Manufacturing Method
Application: 17/199,827 →
Publication: US US20220293955A1
Flame-Resistant Bipolar Electrodes, Bipolar Lithium Batteries, and Manufacturing Method
Application: 17/206,679 →
Publication: US US20220302440A1
Method of Producing Flame-Resistant Quasi-Solid Electrolytes and Lithium Batteries Containing Same
Application: 17/224,405 →
Publication: US US20220336859A1
Prelithiated Anode, Lithium-Ion Batteries Containing a Prelithiated Anode and Method of Producing Same
Application: 17/244,441 →
Publication: US US20220359857A1
Thermally Stable Polymer Composite Separator for a Lithium Secondary Battery and Manufacturing Method
Application: 17/314,569 →
Publication: US US20220384908A1
Thermally Stable Polymer-Based Composite Separator for a Lithium Secondary Battery and Manufacturing Method
Application: 17/319,197 →
Publication: US US20220384909A1
Polymer Composite Separator for a Lithium Secondary Battery and Manufacturing Method
Application: 17/324,747 →
Publication: US US20220407182A1
Multi-Layer Solid Electrolyte Separator for a Lithium Secondary Battery and Manufacturing Method
Application: 17/338,492 →
Publication: US US20220407183A1
Prelithiated Anode, Lithium-Ion Battery Containing Same, and Method of Producing Same
Application: 17/402,188 →
Publication: US US20230057285A1
Flame-Resistant Hybrid Inorganic-Polymeric Solid-State Electrolytes and Lithium Batteries Containing Same
Application: 17/410,282 →
Publication: US US20230096724A1
Lithium-Ion Battery Containing a Stable Artificial Solid-Electrolyte Interface Layer
Application: 17/449,002 →
Publication: US US20230096033A1
Flame-Resistant High Energy Density Lithium-Ion Batteries and Manufacturing Method
Application: 17/449,198 →
Publication: US US20230101561A1
High-Energy Density Lithium-Ion Battery Containing Stable Artificial Solid-Electrolyte Interface
Application: 17/498,444 →
Publication: US US20230109953A1
Elastic Polymer-Protected Anode Particles, Anode, and Lithium-Ion Battery
Application: 17/533,192 →
Publication: US US20230163271A1
Elastomer-Protected Anode and Lithium-Ion Battery
Application: 17/539,453 →
Publication: US US20230170482A1
Inorganic-Polymeric Hybrid Solid-State Electrolytes, Lithium Batteries Containing Same, and Production Processes
Application: 17/648,167 →
Publication: US US20230231181A1
Elastomer/Inorganic Hybrid Solid-State Electrolytes, Lithium Batteries Containing Same, and Production Processes
Application: 17/648,856 →
Publication: US US20230238575A1
Conducting Polymer/Inorganic Hybrid Solid-State Electrolytes, Lithium Batteries Containing Same, and Production Processes
Application: 17/649,149 →
Publication: US US20230238571A1
Anode Electrode Protective Layer for Lithium-ion Batteries
Application: 17/649,245 →
Publication: US US20230246171A1
Elastic Polymer Solid Electrolyte Separator for a Lithium Metal Battery and Manufacturing Process
Application: 17/649,377 →
Publication: US US20230261320A1
Elastomer-Protected Anode and Lithium Battery
Application: 17/649,863 →
Publication: US US20230246192A1
Sodium-Ion Battery Containing a High-Capacity Graphitic Anode and Manufacturing Method
Application: 17/650,969 →
Publication: US US20230261190A1
Rechargeable Sodium Battery Containing a Solid Elastomer Electrolyte and Manufacturing Method
Application: 17/662,724 →
Publication: US US20230369643A1
Heat/Flame-Resistant Polymer Composite-Based Solid Electrolyte Separator, Lithium Secondary Battery, and Manufacturing Method
Application: 17/804,721 →
Publication: US US20230387548A1
Process for Depositing and Prelithiating an Anode Active Material in Porous Conductive Particles for Lithium Batteries
Application: 18/067,112 →
Publication: US US20240204163A1
Process for Producing Carbon Anode Compositions for Lithium Ion Batteries
Patent: 7,993,780 →
Application: 11/906,984 →
Publication: US US20090090640A1
Method of Producing Prelithiated Anodes for Secondary Lithium Ion Batteries
Patent: 8,158,282 →
Application: 12/291,689 →
Publication: US US20100120179A1
Nano-Structured Anode Compositions for Lithium Metal and Lithium Metal-Air Secondary Batteries
Patent: 8,236,452 →
Application: 12/589,999 →
Publication: US US20110104571A1
Secondary Lithium Ion Battery Containing a Prelithiated Anode
Patent: 8,241,793 →
Application: 12/319,114 →
Publication: US US20100173198A1
Mixed nano-filament electrode materials for lithium ion batteries
Patent: 8,435,676 →
Application: 12/008,118 →
Publication: US US20090176159A1
Submicron-Scale and Lower-Micron Graphitic Fibrils as an Anode Active Material for a Lithium Ion Battery
Patent: 8,501,348 →
Application: 12/803,750 →
Publication: US US20110136007A1
Conductive Graphene Polymer Binder for Electrochemical Cell Electrodes
Patent: 8,652,687 →
Application: 12/655,172 →
Publication: US US20110159372A1
Graphene-Enhanced cathode materials for lithium batteries
Patent: 8,691,441 →
Application: 12/807,471 →
Publication: US US20120058397A1
Graphene-enabled vanadium oxide cathode and lithium cells containing same
Patent: 8,765,302 →
Application: 13/134,782 →
Publication: US US20120321953A1
Partially and fully surface-enabled metal ion-exchanging energy storage devices
Patent: 8,859,143 →
Application: 12/930,294 →
Publication: US US20120171574A1
Method of producing hybrid nano-filament electrodes for lithium metal or lithium ion batteries
Patent: 8,906,447 →
Application: 12/077,520 →
Publication: US US20090169725A1
Conductive Nanocomposite-Based Electrodes for Lithium Batteries
Patent: 8,936,874 →
Application: 12/156,644 →
Publication: US US20090305135A1
Anode compositions for lithium secondary batteries
Patent: 8,962,188 →
Application: 12/655,746 →
Publication: US US20110165462A1
Process for producing hybrid nano-filament electrodes for lithium batteries
Patent: 8,968,820 →
Application: 12/150,096 →
Publication: US US20090269511A1
Carbon anode compositions for lithium ion batteries
Patent: 9,029,019 →
Application: 11/893,398 →
Publication: US US20090047579A1
Non-Flammable Quasi-Solid Electrolyte and Non-Lithium Alkali Metal or Alkali-Ion Secondary Batteries Containing Same
Patent: 9,059,481 →
Application: 13/987,764 →
Publication: US US20150064574A1
Rechargeable lithium cell having a phthalocyanine-based high-capacity cathode
Patent: 9,112,210 →
Application: 13/506,778 →
Publication: US US20130309561A1
Lithium metal-sulfur and lithium ion-sulfur secondary batteries containing a nano-structured cathode and processes for producing same
Patent: 9,112,240 →
Application: 12/655,597 →
Publication: US US20110165466A1
Rechargeable lithium cell having a meso-porous conductive material structure-supported phthalocyanine compound cathode
Patent: 9,147,874 →
Application: 13/507,168 →
Publication: US US20130330611A1
Lithium Secondary Batteries Containing Lithium Salt-Ionic Liquid Solvent Electrolyte
Patent: 9,190,696 →
Application: 13/986,576 →
Publication: US US20140342249A1
Cathode active material-coated discrete graphene sheets for lithium batteries and process for producing same
Patent: 9,203,084 →
Application: 13/987,567 →
Publication: US US20150044556A1
Rechargeable lithium cell having a chemically bonded phthalocyanine compound cathode
Patent: 9,362,555 →
Application: 13/573,275 →
Publication: US US20140072871A1
Lithium secondary batteries containing non-flammable quasi-solid electrolyte
Patent: 9,368,831 →
Application: 13/986,814 →
Publication: US US20140363746A1
Prelithiated current collector and secondary lithium cells containing same
Patent: 9,385,397 →
Application: 13/199,058 →
Publication: US US20130045427A1
Graphite or carbon particulates for the lithium ion battery anode
Patent: 9,437,344 →
Application: 12/804,413 →
Publication: US US20120021294A1
Rechargeable magnesium-ion cell having a high-capacity cathode
Patent: 9,455,469 →
Application: 13/506,736 →
Publication: US US20130302697A1
Large-grain graphene thin film current collector and secondary batteries containing same
Patent: 9,484,160 →
Application: 13/987,994 →
Publication: US US20150086881A1
Hybrid nano-filament anode compositions for lithium ion batteries
Patent: 9,564,629 →
Application: 12/006,209 →
Publication: US US20090169996A1
Anode active material-coated graphene sheets for lithium batteries and process for producing same
Patent: 9,564,630 →
Application: 13/987,566 →
Publication: US US20150044565A1
Process for producing alkali metal or alkali-ion batteries having high volumetric and gravimetric energy densities
Patent: 9,564,656 →
Application: 14/756,509 →
Process for Mass-Producing Silicon Nanowires and Silicon Nanowire-Graphene Hybrid Particulates
Patent: 9,601,763 →
Application: 14/545,108 →
Publication: US US20160285084A1
Non-Flammable Quasi-Solid Electrolyte-Separator Layer Product for Lithium Battery Applications
Patent: 9,601,803 →
Application: 13/987,394 →
Publication: US US20150024248A1
Process for producing non-flammable quasi-solid electrolyte and electrolyte-separator for lithium battery applications
Patent: 9,601,805 →
Application: 13/987,396 →
Publication: US US20150024121A1
Magnesium-sulfur secondary battery containing a metal polysulfide-preloaded active cathode layer
Patent: 9,666,865 →
Application: 14/545,279 →
Publication: US US20160308208A1
Active Cathode Layer for Metal-Sulfur Secondary Battery
Patent: 9,666,899 →
Application: 14/545,128 →
Publication: US US20160294000A1
Method of operating a lithium-ion cell having a high-capacity cathode
Patent: 9,673,447 →
Application: 13/506,324 →
Publication: US US20130271085A1
Anode protective layer compositions for lithium metal batteries
Patent: 9,722,275 →
Application: 12/001,981 →
Publication: US US20090155676A1
Methods for mass-producing silicon nano powder and graphene-doped silicon nano powder
Patent: 9,728,777 →
Application: 13/987,450 →
Publication: US US20150028263A1
Alkali metal or Alkali-Ion batteries having high volumetric and gravimetric energy densities
Patent: 9,735,445 →
Application: 14/756,510 →
Publication: US US20170077546A1
Graphene foam-protected anode active materials for lithium batteries
Patent: 9,742,001 →
Application: 14/121,151 →
Publication: US US20160043384A1
Process for Silicon Nanowire-Graphene Hybrid Mat
Patent: 9,755,225 →
Application: 15/427,863 →
Publication: US US20170149054A1
Dendrite-Intercepting layer for alkali metal secondary battery
Patent: 9,755,236 →
Application: 14/545,203 →
Publication: US US20160301075A1
Alkali metal secondary battery containing a dendrite-intercepting layer
Patent: 9,755,241 →
Application: 14/545,204 →
Publication: US US20160301078A1
Process for Producing Silicon Nanowires Directly from Silicon Particles
Patent: 9,774,033 →
Application: 14/545,106 →
Publication: US US20160285083A1
Carbon matrix-and carbon matrix composite-based dendrite-Intercepting layer for alkali metal secondary battery
Patent: 9,780,349 →
Application: 14/545,552 →
Publication: US US20160344010A1
Alkali Metal Secondary Battery Containing a Carbon Matrix- or Carbon Matrix Composite-based Dendrite-Intercepting Layer
Patent: 9,780,379 →
Application: 14/545,553 →
Publication: US US20160344035A1
Lithium-Selenium Secondary Batteries Having Non-Flammable Electrolyte
Patent: 9,812,736 →
Application: 13/987,785 →
Publication: US US20150064575A1
Lithium-sulfur secondary battery containing gradient electrolyte
Patent: 9,882,238 →
Application: 13/986,575 →
Publication: US US20140342209A1
Flexible and Shape-Conformal Rope-Shape Alkali Metal-Sulfur Batteries
Patent: 9,905,856 →
Application: 15/392,213 →
Rechargeable Lithium-Sulfur Battery Having a High Capacity and Long Cycle Life
Patent: 9,917,303 →
Application: 13/986,319 →
Publication: US US20140315100A1
Encapsulated phthalocyanine particles, high-capacity cathode containing these particles, and rechargeable lithium cell containing such a cathode
Patent: 9,923,206 →
Application: 13/573,298 →
Publication: US US20140072879A1
Method of Producing Deformable Quasi-Solid Electrode Material for Alkali Metal Batteries
Patent: 9,960,451 →
Application: 15/604,606 →
Lithium Ion Battery Anode Containing Silicon Nanowires Grown in situ in Pores of Graphene Foam and Production Process
Patent: 9,997,784 →
Application: 15/287,078 →
Publication: US US20180102543A1
Metal-Sulfur Battery Cathode Containing Humic Acid-Derived Conductive Foam Impregnated with Sulfur or Sulfide
Application: 15/270,871 →
Publication: US US20180083289A1
Process for Producing Flexible and Shape-Conformal Rope-Shape Alkali Metal Batteries
Application: 15/392,127 →
Publication: US US20180183107A1
Process for Producing Humic Acid-Bonded Metal Foil Film Current Collector
Application: 15/243,589 →
Publication: US US20180053930A1
Anode containing active material-coated graphene sheets and lithium-ion batteries containing same
Application: 13/987,565 →
Publication: US US20150044564A1
Method of producing alkali metal or alkali-ion batteries having high volumetric and gravimetric energy densities
Application: 14/998,514 →
Publication: US US20170207489A1
Methods for Mass-Producing Silicon Nano Powder and Graphene-Doped Silicon Nano Powder
Application: 15/631,816 →
Publication: US US20170294647A1
Alkali Metal-Sulfur Secondary Battery Containing a Protected Sulfur Cathode and Manufacturing Method
Application: 15/440,151 →
Publication: US US20180241031A1
Hybrid Solid State Electrolyte for Lithium Secondary Battery
Application: 15/375,508 →
Publication: US US20180166759A1
Aluminum Secondary Battery Cathode Having Oriented Graphene
Application: 15/450,447 →
Publication: US US20180254485A1
Flexible and Shape-Conformal Cable-Shape Alkali Metal-Sulfur Batteries
Application: 15/391,368 →
Publication: US US20180183024A1
Graphene Oxide-Bonded Metal Foil Thin Film Current Collector and Battery and Supercapacitor Containing Same
Application: 15/231,498 →
Publication: US US20180040900A1
Method of Producing a Shape-Conformable Alkali Metal Battery Having a Conductive and Deformable Quasi-solid Polymer Electrode
Application: 15/610,136 →
Publication: US US20180351201A1
Graphene-Metal Hybrid Foam-Based Electrode for an Alkali Metal Battery
Application: 15/175,775 →
Publication: US US20170352869A1
Lithium Secondary Batteries Containing Protected Particles of Anode Active Materials and Method of Manufacturing
Application: 15/436,964 →
Publication: US US20180241032A1
Lithium-ion Cell Having a High-Capacity Cathode
Application: 15/491,710 →
Publication: US US20180138498A1
Alkali Metal Battery Having a Deformable Quasi-Solid Electrode Material
Application: 15/604,607 →
Publication: US US20180342737A1
Surface-Stabilized and Prelithiated Anode Active Materials for Lithium Batteries and Production Method
Application: 15/707,450 →
Publication: US US20190088930A1
Continuous process for producing electrodes and alkali metal batteries having ultra-high energy densities
Application: 14/756,754 →
Publication: US US20170104204A1
Partially and fully surface-enabled alkali metal ion-exchanging energy storage devices
Application: 14/121,050 →
Publication: US US20170194665A9
Process for producing lithium batteries having an ultra-high energy density
Application: 14/756,698 →
Publication: US US20170098856A1
Rechargeable lithium batteries having an ultra-high volumetric energy density and required production process
Application: 14/756,293 →
Publication: US US20170062869A1
Cathode Active Material Layer for Lithium Secondary Battery and Method of Manufacturing
Application: 15/442,807 →
Publication: US US20180248190A1
Multivalent Metal Ion Battery Having a Cathode Layer of Protected Graphitic Carbon and Manufacturing Method
Application: 15/466,286 →
Publication: US US20180277884A1
Flexible and Shape-Conformal Cable-Type Alkali Metal Batteries
Application: 15/384,749 →
Publication: US US20180175433A1
Surface-Stabilized Anode Active Material Particulates for Lithium Batteries and Production Method
Application: 15/783,634 →
Publication: US US20190115617A1
Method of Producing Shape-Conformable Alkali Metal-Sulfur Battery Having a Deformable and Conductive Quasi-Solid Electrode
Application: 15/638,854 →
Publication: US US20190006721A1
Alkali metal-sulfur secondary battery containing a pre-sulfurized cathode and production process
Application: 14/544,760 →
Publication: US US20160240840A1
Encapsulated Cathode Active Material Particles, Lithium Secondary Batteries Containing Same, and Method of Manufacturing
Application: 15/483,342 →
Publication: US US20180294474A1
Aluminum Secondary Battery Having an Exfoliated Graphite-Based High-Capacity Cathode and Manufacturing Method
Application: 15/434,913 →
Publication: US US20180233747A1
Solid state electrolyte for lithium secondary battery
Application: 14/998,411 →
Publication: US US20170194663A1
Graphene-Protected Lead Acid Batteries
Application: 15/365,049 →
Publication: US US20180151872A1
Flexible and Shape-Conformal Rope-Shape Alkali Metal Batteries
Application: 15/392,120 →
Publication: US US20180183066A1
Shape-Conformable Alkali Metal Battery Having a Conductive and Deformable Quasi-solid Polymer Electrode
Application: 15/608,597 →
Publication: US US20180351200A1
Graphitic Carbon-Based Cathode for Aluminum Secondary Battery and Manufacturing Method
Application: 15/454,053 →
Publication: US US20180261848A1
Method of Producing Multi-Level Graphene-Protected Cathode Active Material Particles for Battery Applications
Application: 15/996,183 →
Publication: US US20190372100A1
Multivalent Metal Ion Battery Having a Cathode of Recompressed Graphite Worms and Manufacturing Method
Application: 15/463,555 →
Publication: US US20180269479A1
Graphene Foam-Protected Metal Fluoride and Metal Chloride Cathode Active Materials for Lithium Batteries
Application: 15/416,850 →
Publication: US US20180212250A1
Protected Particles of Anode Active Materials for Lithium Batteries
Application: 15/901,367 →
Publication: US US20190260028A1
Process for Graphene Foam-Protected Anode Active Materials for Lithium Batteries
Application: 15/651,528 →
Publication: US US20170317336A1
Process for Producing Graphene Oxide-Bonded Metal Foil Thin Film Current Collector for a Battery or Supercapacitor
Application: 15/231,486 →
Publication: US US20180040874A1
Alkali Metal-Sulfur Secondary Battery Containing a Hybrid Anode
Application: 15/665,608 →
Publication: US US20190044138A1
Humic Acid-Bonded Metal Foil Film Current Collector and Battery and Supercapacitor Containing Same
Application: 15/243,606 →
Publication: US US20180053931A1
Method of Producing Protected Particles of Anode Active Materials for Lithium Batteries
Application: 15/906,207 →
Publication: US US20190260015A1
Production Method for Electrochemically Stable Anode Particulates for Lithium Secondary Batteries
Application: 16/160,283 →
Publication: US US20200119338A1
Aluminum Secondary Battery Having a High-Capacity and High-Rate Capable Cathode and Manufacturing Method
Application: 15/449,976 →
Publication: US US20180254512A1
Selenium Preloaded Cathode for Alkali Metal-Selenium Secondary Battery and Production Process
Application: 15/947,190 →
Publication: US US20190312311A1
Anode Particulates or Cathode Particulates and Alkali Metal Batteries Containing Same
Application: 15/827,754 →
Publication: US US20190165365A1
Process for Flexible and Shape-Conformal Rope-Shape Alkali Metal-Sulfur Batteries
Application: 15/392,224 →
Publication: US US20180183067A1
Alkali Metal-Sulfur Secondary Battery Containing a Nano Sulfur-Loaded Cathode and Manufacturing Method
Application: 15/431,231 →
Publication: US US20180233784A1
Shape-Conformable Alkali Metal-Sulfur Battery Having a Deformable and Conductive Quasi-Solid Electrode
Application: 15/638,811 →
Publication: US US20190006719A1
Carbon Matrix- and Carbon Matrix Composite-based Dendrite-Intercepting Layer for Alkali Metal Secondary Battery
Application: 15/680,919 →
Publication: US US20170373297A1
Alkali Metal Secondary Battery Containing a Carbon Matrix- or Carbon Matrix Composite-based Dendrite-Intercepting Layer
Application: 15/680,955 →
Publication: US US20170373322A1
Process for Prelithiating an Anode Active Material for a Lithium Battery
Application: 15/710,952 →
Publication: US US20190088922A1
Hybrid Solid State Electrolyte for Lithium Sulfur Secondary Battery
Application: 16/104,557 →
Publication: US US20180366798A1
Lithium-sulfur secondary battery containing gradient electrolyte
Application: 15/834,991 →
Publication: US US20180175442A1
Alkali Metal-Sulfur Secondary Battery Containing a Protected Sulfur Cathode Material and Manufacturing Method
Application: 15/676,672 →
Publication: US US20190051902A1
Production process for alkali metal-sulfur batteries having high volumetric and gravimetric energy densities
Application: 14/998,513 →
Publication: US US20170207488A1
Manufacturing Method for Selenium Preloaded Mesoporous Carbon Cathode for Alkali Metal-Selenium Secondary Battery
Application: 15/956,325 →
Publication: US US20190326588A1
Manufacturing Method for Alkali Metal-Selenium Secondary Battery Containing a Cathode of Protected Selenium
Application: 15/952,544 →
Publication: US US20190319297A1
Method of Producing Multi-Level Graphene-Protected Anode Active Material Particles for Battery Applications
Application: 15/996,156 →
Publication: US US20190372099A1
Lithium Metal Secondary Battery Featuring an Anode-Protecting Layer
Application: 16/014,614 →
Publication: US US20190393543A1
Multi-Level Graphene-Protected Battery Cathode Active Material Particles
Application: 15/996,167 →
Publication: US US20190372093A1
Elastomer-Encapsulated Particles of High-Capacity Anode Active Materials for Lithium Batteries
Application: 14/999,080 →
Publication: US US20170288211A1
Lithium Metal Secondary Battery Containing an Electrochemically Stable Anode-Protecting Layer
Application: 16/113,651 →
Publication: US US20190393495A1
Hybrid Lithium Anode Electrode Layer and Lithium-Ion Battery Containing Same
Application: 15/665,606 →
Publication: US US20190044137A1
High-Power and Fast-Chargeable Lithium Battery
Application: 16/101,908 →
Publication: US US20200052325A1
Lithium Metal Secondary Battery Containing Anode-Protecting Polymer Layer and Manufacturing Method
Application: 15/483,348 →
Publication: US US20180294476A1
Lithium-Selenium Battery Containing an Electrode-Protecting Layer and Method for Improving Cycle-Life
Application: 16/017,294 →
Publication: US US20190393544A1
Partially and Fully Surface-Enabled Transition Metal Ion-Exchanging Energy Storage Devices
Application: 15/911,758 →
Publication: US US20180198168A1
Exfoliated Graphite Worm-Protected Metal Fluoride and Metal Chloride Cathode Active Materials for Lithium Batteries
Application: 15/419,454 →
Publication: US US20180219214A1
Lithium Metal Secondary Battery Containing a Protected Lithium Anode
Application: 16/123,212 →
Publication: US US20190393487A1
Lithium Metal Secondary Battery Containing Two Anode-Protecting Layers
Application: 16/120,862 →
Publication: US US20190393485A1
Chemical-Free Production Method of Graphene-Protected Porous Anode Particles for Lithium Batteries
Application: 16/238,040 →
Publication: US US20200168894A1
Method of Producing Anode or Cathode Particulates for Alkali Metal Batteries
Application: 15/832,078 →
Publication: US US20190173082A1
Protected Particles of Anode Active Materials, Lithium Secondary Batteries Containing Same and Method of Manufacturing
Application: 15/676,677 →
Publication: US US20190051904A1
Method of Producing Electrochemically Stable Elastomer-Encapsulated Particles of Anode Active Materials for Lithium Batteries
Application: 15/914,216 →
Publication: US US20190280301A1
Zinc Ion-Exchanging Energy Storage Device
Application: 14/545,240 →
Publication: US US20160301096A1
Polymer Binder for Lithium Battery and Method of Manufacturing
Application: 15/442,278 →
Publication: US US20180248173A1
Method of Improving Power Density and Fast-Chargeability of a Lithium Secondary Battery
Application: 16/101,921 →
Publication: US US20200052350A1
Method of Improving Cycle-Life of Alkali Metal-Sulfur Secondary Battery
Application: 16/010,975 →
Publication: US US20190386347A1
Lithium Anode-Protecting Polymer Layer for a Lithium Metal Secondary Battery and Manufacturing Method
Application: 15/485,934 →
Publication: US US20180301707A1
Alkali Metal-Sulfur Secondary Battery Containing a Conductive Electrode- Protecting Layer
Application: 16/010,965 →
Publication: US US20190386332A1
Battery Having a Low Output Voltage
Application: 15/297,877 →
Publication: US US20180108909A1
Anode Particulates or Cathode Particulates and Alkali Metal Batteries
Application: 15/860,151 →
Publication: US US20190165374A1
Lithium-Selenium Battery Containing an Electrode-Protecting Layer and Method of Improving Cycle-Life
Application: 16/114,959 →
Publication: US US20190393510A1
Protected Particles of Cathode Active Materials for Lithium Batteries
Application: 16/112,208 →
Publication: US US20200067080A1
Method of Alkali Metal-Selenium Secondary Battery Containing a Graphene-Based Separator Layer
Application: 15/976,428 →
Publication: US US20190348682A1
Alkali Metal-Selenium Secondary Battery Containing a Graphene-Based Separator Layer
Application: 15/976,395 →
Publication: US US20190348656A1
Lithium Secondary Battery Containing Non-Flammable Electrolyte and Manufacturing Method
Application: 15/470,408 →
Publication: US US20180277894A1
Rolled 3D Alkali Metal Batteries and Production Process
Application: 15/817,942 →
Publication: US US20190027788A1
Alkali Metal-Sulfur Secondary Battery Containing a Polymer-Encapsulated Sulfur Cathode and Manufacturing Method
Application: 15/483,347 →
Publication: US US20180294475A1
Graphene-Enabled Selenium Cathode Active Material for an Alkali Metal-Selenium Secondary Battery
Application: 15/948,326 →
Publication: US US20190312276A1
Aluminum Secondary Battery Having a High-Capacity and High Energy Cathode and Manufacturing Method
Application: 15/431,250 →
Publication: US US20180233748A1
Method of Producing Shape-Conformable Alkali Metal-Sulfur Battery Having a Deformable and Conductive Quasi-Solid Electrode
Application: 16/653,077 →
Publication: US US20200044290A1
Particulates of Conducting Polymer Network-Protected Cathode Active Material Particles for Lithium Batteries
Application: 16/400,585 →
Publication: US US20200350589A1
Method of Extending Cycle-Life of a Lithium-Sulfur Battery
Application: 16/116,341 →
Publication: US US20200028179A1
Conducting Elastomer Composite-Encapsulated Particles of Anode Active Materials for Lithium Batteries
Application: 15/910,465 →
Publication: US US20190273249A1
Anode-Protecting Layer for a Lithium Metal Secondary Battery and Manufacturing Method
Application: 15/676,680 →
Publication: US US20190051905A1
Method of Manufacturing Conducting Elastomer Composite-Encapsulated Particles of Anode Active Materials for Lithium Batteries
Application: 15/910,471 →
Publication: US US20190273250A1
Process for Alkali Metal-Selenium Secondary Battery Containing a Cathode of Encapsulated Selenium Particles
Application: 15/954,088 →
Publication: US US20190319264A1
Method of Producing Electrochemically Stable Anode Particulates for Lithium Secondary Batteries
Application: 16/238,061 →
Publication: US US20200119340A1
Lithium Metal Secondary Battery Containing Elastic Polymer Foam as an Anode-Protecting Layer
Application: 16/256,321 →
Publication: US US20200243854A1
Production of Semiconductor Nanowires Directly from Solid Particles
Application: 16/250,491 →
Publication: US US20200234954A1
Method of Protecting Sulfur Cathode Materials for Alkali Metal-Sulfur Secondary Battery
Application: 16/010,225 →
Publication: US US20190386295A1
Method of Protecting Anode of a Lithium-Sulfur Battery
Application: 16/126,745 →
Publication: US US20190386342A1
Lithium-Sulfur Battery Containing Two Anode-Protecting Layers
Application: 16/126,736 →
Publication: US US20190386296A1
Lithium Battery Cathode and Method of Manufacturing
Application: 15/442,803 →
Publication: US US20180248189A1
Lithium-Sulfur Battery Containing an Electrode-Protecting Layer
Application: 16/116,329 →
Publication: US US20200028178A1
Electrochemically Stable Elastomer-Encapsulated Particles of Anode Active Materials for Lithium Batteries
Application: 15/914,213 →
Publication: US US20190280291A1
Multi-Level Graphene-Protected Anode Active Material Particles for Fast-Charging Lithium-Ion Batteries
Application: 16/001,244 →
Publication: US US20190379039A1
Alkali Metal-Sulfur Secondary Battery Containing a Non-Electronically Conductive Anode-Protecting Layer
Application: 16/241,166 →
Publication: US US20200220162A1
Fast-Chargeable Lithium Battery
Application: 16/006,131 →
Publication: US US20190379045A1
Chemical-Free Production of Protected Anode Active Material Particles for Lithium Batteries
Application: 16/199,817 →
Publication: US US20200168898A1
Alkali Metal-Sulfur Secondary Battery Containing a Pre-Sulfurized Cathode and Production Process
Application: 16/596,225 →
Publication: US US20200052290A1
Environmentally Benign Process for Producing Graphene-Protected Anode Particles for Lithium Batteries
Application: 16/296,993 →
Publication: US US20200287216A1
Multi-Level Graphene-Protected Anode Active Material Particles for Battery Applications
Application: 15/996,144 →
Publication: US US20190372151A1
Electrochemically Stable Elastomer-Encapsulated Particles of Cathode Active Materials for Lithium Batteries
Application: 16/109,142 →
Publication: US US20200067077A1
Alkali Metal-Selenium Secondary Battery Containing a Cathode of Encapsulated Selenium Particles
Application: 15/954,046 →
Publication: US US20190319298A1
Production Process for Graphene-Enabled Bi-Polar Electrode and Battery Containing Same
Application: 16/598,584 →
Publication: US US20210111391A1
Alkali Metal-Sulfur Secondary Battery Containing Cathode Material Particulates
Application: 16/010,213 →
Publication: US US20190386337A1
Surface-Stabilized Anode Active Material Particulates for Lithium Batteries and Production Method
Application: 16/580,564 →
Publication: US US20200020975A1
Process for Producing Porous Graphene Particulate-Protected Anode Active Materials for Lithium Batteries
Application: 16/163,964 →
Publication: US US20200127288A1
Alkali Metal-Sulfur Batteries Having High Volumetric and Gravimetric Energy Densities
Application: 14/998,523 →
Publication: US US20170207484A1
Method of Improving Fast-Chargeability of a Lithium Battery
Application: 16/006,138 →
Publication: US US20190379021A1
Continuous Process for Producing Electrodes and Alkali Metal Batteries Having Ultra-High Energy Densities
Application: 16/296,814 →
Publication: US US20190207200A1
Graphite Protected Anode Active Material Particles for Rechargeable Lithium Batteries
Application: 16/238,079 →
Publication: US US20200212426A1
Partially and Fully Surface-Enabled Alkali Metal Ion-Exchanging Energy Storage Devices
Application: 16/444,527 →
Publication: US US20190305376A1
Graphene-Enabled Niobium-Based Composite Metal Oxide as an Anode Active Material for a Lithium-Ion Battery
Application: 15/822,882 →
Publication: US US20190165364A1
Method of Producing Protected Particles of Cathode Active Materials for Lithium Batteries
Application: 16/112,225 →
Publication: US US20200067101A1
Multivalent Metal Ion Battery Having a Cathode Layer of Protected Graphitic Carbon and Manufacturing Method
Application: 16/548,310 →
Publication: US US20200028204A1
Method of Producing Electrochemically Stable Elastomer-Encapsulated Particles of Cathode Active Materials for Lithium Batteries
Application: 16/109,178 →
Publication: US US20200067079A1
Pre-sulfurized cathode for alkali metal-sulfur secondary battery and production process
Application: 14/544,765 →
Publication: US US20160240841A1
Graphene-Enabled Bi-Polar Electrode and Battery Containing Same
Application: 16/580,324 →
Publication: US US20210091383A1
Non-flammable Electrolyte Containing Liquefied Gas and Lithium Secondary Batteries Containing Same
Application: 15/633,369 →
Publication: US US20180375156A1
Lithium Metal Secondary Battery Containing an Elastic Anode-Protecting Layer
Application: 16/166,536 →
Publication: US US20190393541A1
Rechargeable dual electroplating cell
Application: 13/507,057 →
Publication: US US20130319870A1
Graphite Protected Anode Active Material Particles for Lithium Batteries
Application: 16/199,910 →
Publication: US US20200168899A1
Chemical-Free Production of Graphene-Protected Porous Anode Particles for Lithium Batteries
Application: 16/238,029 →
Publication: US US20200168900A1
Fire-Resistant Lithium Battery Containing an Electrode-Protecting Layer
Application: 15/991,577 →
Publication: US US20190372148A1
Particulates of Polymer Electrolyte-Protected Anode Active Material Particles for Lithium-Ion Batteries
Application: 16/410,152 →
Publication: US US20200365880A1
Shape-Conformable Alkali Metal-Sulfur Battery
Application: 15/612,497 →
Publication: US US20180351196A1
Encapsulated Cathode Active Material Particles, Lithium Secondary Batteries Containing Same, and Method of Manufacturing
Application: 16/685,174 →
Publication: US US20200091507A1
Production of Metal Nanowires Directly from Metal Particles
Application: 16/258,849 →
Publication: US US20200238377A1
Graphene Foam-Protected Phosphorus Material for Lithium-Ion or Sodium-Ion Batteries
Application: 16/677,126 →
Publication: US US20210143409A1
Solid State Electrolyte for Lithium Secondary Battery
Application: 16/151,605 →
Publication: US US20190036165A1
Combined Graphene Balls and Metal Particles for an Anode of an Alkali Metal Battery
Application: 16/695,819 →
Publication: US US20210155484A1
Graphene-Carbon Hybrid Foam-Protected Anode Active Material Coating for Lithium-Ion Batteries
Application: 16/252,814 →
Publication: US US20200235392A1
Method of Producing Shape-Conformable Alkali Metal-Sulfur Battery
Application: 15/612,537 →
Publication: US US20180351198A1
Humic Acid-Bonded Metal Foil Film Current Collector and Battery and Supercapacitor Containing Same
Application: 16/788,649 →
Publication: US US20200255419A1
Lithium Battery Anode Containing Silicon Nanowires Formed in situ in Pores of Graphene Foam
Application: 15/975,181 →
Publication: US US20180261847A1
Battery Fast-Charging System and Method of Operating Same
Application: 16/519,891 →
Publication: US US20210028509A1
Porous Particulates of Graphene Shell-Protected Alkali Metal, Electrodes, and Alkali Metal Battery
Application: 16/294,360 →
Publication: US US20200287206A1
Method of Manufacturing a Lithium Secondary Battery Having a Protected High-Capacity Anode Active Material
Application: 15/434,632 →
Publication: US US20180233736A1
Battery Fast-Charging and Cooling System and Method of Operating Same
Application: 16/521,045 →
Publication: US US20210028507A1
Alkali Metal-Selenium Secondary Battery Containing a Graphene Foam-Protected Selenium Cathode
Application: 15/948,367 →
Publication: US US20190312283A1
Metal-Containing Graphene Balls as an Anode Active Material for an Alkali Metal Battery
Combined Graphene Balls and Metal Particles for an Anode of an Alkali Metal Battery
A Method of Producing Non-Flammable Quasi-Solid Electrolyte and a Quasi-Solid Electrolyte/ Separator Layer for Use in a Lithium Battery
Lithium-Protecting Polymer Layer for an Anode-Less Lithium Metal Secondary Battery and Manufacturing Method
Graphene Foam-Based Protective Layer for an Anode-Less Alkali Metal Battery
Elastic Crosslinked Network of Polymer-Encapsulated Anode Particles for Lithium Batteries and Method of Manufacturing
Lithium-Protecting Polymer Composite Layer for a Lithium Metal Secondary Battery and Manufacturing Method
Lithium Ion-Permeable Separator for a Lithium Secondary Battery and Manufacturing Method
Multi-Functional Separator for a Lithium Secondary Battery and Manufacturing Method
Flame-Resistant Quasi-Solid and Solid-State Electrolyte for Lithium-Ion and Lithium Metal Batteries and Production Method
High-Elasticity Polymer for Lithium Metal Protection, Lithium Secondary Battery and Manufacturing Method
Flame-Resistant Quasi-Solid and Solid-State Electrolytes, Lithium Batteries and Manufacturing Method
Flame-Resistant Electrolyte Compositions, Quasi-Solid and Solid-State Electrolytes, and Lithium Batteries
Flame-Resistant Electrolyte Compositions from Phosphonate Vinyl Monomers, Quasi-Solid and Solid-State Electrolytes, and Lithium Batteries
Phosphazene Compound-Based Electrolyte Compositions, Quasi-Solid and Solid-State Electrolytes, and Lithium Batteries
Phosphazene Compound-Based Elastic Polymer-Encapsulated Anode Particles for Lithium Batteries and Method of Manufacturing
Thermally Stable Elastic Polymer-Encapsulated Anode Particles for Lithium Batteries and Method of Manufacturing
Elastic Flame-Retardant Polymer-Encapsulated Anode Particles for Lithium Batteries and Method of Manufacturing
High-Elasticity Phosphazene Polymer for Lithium Metal Protection, Lithium Secondary Battery and Manufacturing Method
Flame-Retardant High-Elasticity Polymer for Lithium Metal Protection, Lithium Secondary Battery and Manufacturing Method
Solid-State Medium for Lithium Ion Transport, Lithium Batteries and Manufacturing Method
Bipolar Electrodes Containing Flame-Resistant Quasi-Solid or Solid-State Electrolyte, Bipolar Lithium Batteries, and Manufacturing Method
Flame-Resistant Electrodes for Lithium Batteries Containing Quasi-Solid or Solid-State Electrolytes and Manufacturing Method
Flame-Resistant Bipolar Electrodes, Bipolar Lithium Batteries, and Manufacturing Method
Prelithiated Anode, Lithium-Ion Batteries Containing a Prelithiated Anode and Method of Producing Same
Thermally Stable Polymer Composite Separator for a Lithium Secondary Battery and Manufacturing Method
Thermally Stable Polymer-Based Composite Separator for a Lithium Secondary Battery and Manufacturing Method
Polymer Composite Separator for a Lithium Secondary Battery and Manufacturing Method
Multi-Layer Solid Electrolyte Separator for a Lithium Secondary Battery and Manufacturing Method
Prelithiated Anode, Lithium-Ion Battery Containing Same, and Method of Producing Same
Flame-Resistant Hybrid Inorganic-Polymeric Solid-State Electrolytes and Lithium Batteries Containing Same
Elastic Polymer-Protected Anode Particles, Anode, and Lithium-Ion Battery
Elastomer-Protected Anode and Lithium-Ion Battery
Inorganic-Polymeric Hybrid Solid-State Electrolytes, Lithium Batteries Containing Same, and Production Processes
Elastomer/Inorganic Hybrid Solid-State Electrolytes, Lithium Batteries Containing Same, and Production Processes
Conducting Polymer/Inorganic Hybrid Solid-State Electrolytes, Lithium Batteries Containing Same, and Production Processes
Anode Electrode Protective Layer for Lithium-Ion Batteries
Elastic Polymer Solid Electrolyte Separator for a Lithium Metal Battery and Manufacturing Process
Elastomer-Protected Anode and Lithium Battery
Related Assignments (25)
Other recorded transfers of the patents in this record — the chain of ownership.
Assignment of Assignor's Interest Apr 5, 2016
From: ZHAMU, ARUNA, DR; JANG, BOR Z, DR; YU, ZHENNING; LIU, CHENGUANG
To: NANOTEK INSTRUMENTS, INC
Reel/Frame 038362/0001 →
Assignment of Assignor's Interest Apr 13, 2016
From: WANG, MINGCHAO
To: NANOTEK INSTRUMENTS, INC.
Reel/Frame 038427/0611 →
Assignment of Assignor's Interest Apr 13, 2016
From: CHEN, GUORONG
To: NANOTEK INSTRUMENTS, INC.
Reel/Frame 038427/0518 →
Assignment of Assignor's Interest Apr 19, 2016
From: CHEN, GUORONG
To: NANOTEK INSTRUMENTS, INC.
Reel/Frame 038464/0428 →
Assignment of Assignor's Interest Apr 19, 2016
From: JANG, BOR Z.
To: NANOTEK INSTRUMENTS, INC.
Reel/Frame 038464/0403 →
Assignment of Assignor's Interest Apr 19, 2016
From: ZHAMU, ARUNA
To: NANOTEK INSTRUMENTS, INC.
Reel/Frame 038463/0095 →
Assignment of Assignor's Interest Jan 5, 2017
From: HE, HUI
To: NANOTEK INSTRUMENTS, INC.
Reel/Frame 040862/0529 →
Assignment of Assignor's Interest Jan 5, 2017
From: ZHAMU, ARUNA
To: NANOTEK INSTRUMENTS, INC.
Reel/Frame 041268/0118 →
Assignment of Assignor's Interest Jan 5, 2017
From: JANG, BOR Z.
To: NANOTEK INSTRUMENTS, INC.
Reel/Frame 040862/0080 →
Assignment of Assignor's Interest Jan 5, 2017
From: SU, YU-SHENG
To: NANOTEK INSTRUMENTS, INC.
Reel/Frame 040862/0368 →
Assignment of Assignor's Interest Feb 17, 2017
From: JANG, BOR Z
To: NANOTEK INSTRUMENTS, INC.
Reel/Frame 041289/0144 →
Assignment of Assignor's Interest Feb 17, 2017
From: JANG, BOR Z
To: NANOTEK INSTRUMENTS, INC.
Reel/Frame 041289/0102 →
Assignment of Assignor's Interest Feb 17, 2017
From: ZHAMU, ARUNA
To: NANOTEK INSTRUMENTS, INC.
Reel/Frame 041289/0627 →
Assignment of Assignor's Interest Mar 2, 2017
From: PAN, BAOFEI
To: NANOTEK INSTRUMENTS, INC.
Reel/Frame 041434/0557 →
Assignment of Assignor's Interest Apr 13, 2017
From: JANG, BOR Z.
To: NANOTEK INSTRUMENTS, INC.
Reel/Frame 042003/0179 →
Assignment of Assignor's Interest Apr 19, 2017
From: ZHAMU, ARUNA
To: NANOTEK INSTRUMENTS, INC.
Reel/Frame 042060/0165 →
Assignment of Assignor's Interest Apr 19, 2017
From: SU, YU-SHENG
To: NANOTEK INSTRUMENTS, INC.
Reel/Frame 042060/0343 →
Assignment of Assignor's Interest May 23, 2017
From: LIU, CHUEH, DR
To: NANOTEK INSTRUMENTS, INC.
Reel/Frame 042479/0542 →
Assignment of Assignor's Interest May 25, 2017
From: ZHAMU, ARUNA, DR
To: NANOTEK INSTRUMENTS, INC.
Reel/Frame 042506/0896 →
Assignment of Assignor's Interest May 25, 2017
From: JANG, BOR Z, DR
To: NANOTEK INSTRUMENTS, INC.
Reel/Frame 042507/0112 →
Assignment of Assignor's Interest Jun 7, 2017
From: PAN, BAOFEI
To: NANOTEK INSTRUMENTS, INC.
Reel/Frame 042625/0884 →
Assignment of Assignor's Interest Jun 20, 2017
From: HE, HUI
To: NANOTEK INSTRUMENTS, INC.
Reel/Frame 042754/0356 →
Assignment of Assignor's Interest Sep 8, 2017
From: ZHAMU, ARUNA; JANG, BOR Z
To: NANOTEK INSTRUMENTS, INC.
Reel/Frame 043529/0070 →
Assignment of Assignor's Interest Oct 27, 2017
From: ZHAMU, ARUNA; JANG, BOR Z
To: NANOTEK INSTRUMENTS, INC.
Reel/Frame 043965/0045 →
Assignment of Assignor's Interest Nov 30, 2017
From: ZHAMU, ARUNA; JANG, BOR Z
To: NANOTEK INSTRUMENTS, INC.
Reel/Frame 044264/0531 →