IP Library Assignment 049784/0650
Patent Assignment
Reel/Frame 049784/0650

Assignment of Assignor's Interest

Recorded: 2019-07-17 Pages: 42
Assignor
NANOTEK INSTRUMENTS, INC.
Executed: 2019-07-17
Assignee
GLOBAL GRAPHENE GROUP, INC.
1240 MCCOOK AVENUE, DAYTON, OHIO, 45404
Covered Properties (406)
Process for producing nano-scaled graphene plates
Application: 10/858,814 →
Publication: US US20050271574A1
Process for producing nano-scaled platelets and nanocompsites
Application: 11/509,424 →
Publication: US US20080048152A1
Electrochemical Method of Producing Nano Graphene Platelets
Patent: 9,422,164 →
Application: 13/987,362 →
Publication: US US20150021196A1
Chemical-free production of graphene materials
Application: 14/757,193 →
Publication: US US20170158513A1
Electrochemical Method Of Producing Single-Layer Or Few-Layer Graphene Sheets
Application: 14/998,784 →
Publication: US US20170233255A1
Electrochemical production of graphene sheets directly from graphite mineral
Application: 14/998,944 →
Publication: US US20170260637A1
Electrochemical Production of Graphene Sheets from Coke or Coal
Application: 15/193,090 →
Publication: US US20170370009A1
Direct Ultrasonication Production of Graphene Sheets from Coke or Coal
Application: 15/193,092 →
Publication: US US20170369320A1
Supercritical Fluid Process for Producing Graphene from Coke or Coal
Application: 15/211,408 →
Publication: US US20180016149A1
Direct Microwave Production of Graphene
Application: 15/475,451 →
Publication: US US20180286599A1
Microwave System and Method for Graphene Production
Application: 15/491,714 →
Publication: US US20180305213A1
Eco-friendly Production of Graphene
Application: 15/484,546 →
Publication: US US20180290890A1
Production of Graphene Materials Directly from Carbon/Graphite Precursor
Application: 15/700,756 →
Publication: US US20190077669A1
Continuous Process and Apparatus for Producing Graphene
Application: 15/817,882 →
Publication: US US20190152784A1
Production of Graphene Sheets from Highly Aromatic Molecules
Application: 15/894,234 →
Publication: US US20190077668A1
Environmentally Benign Production of Graphene Oxide
Application: 16/046,496 →
Publication: US US20200031676A1
Nano graphene platelet-based conductive inks
Application: 12/215,813 →
Publication: US US20100000441A1
Patterned Nano Graphene Platelet-Based Conductive Inks
Application: 15/241,886 →
Publication: US US20160360616A1
Environmentally Benign Production of Graphene Suspensions
Application: 16/053,239 →
Publication: US US20200039828A1
Chemical-free production of graphene-reinforced inorganic matrix composites
Application: 14/998,729 →
Publication: US US20170225233A1
Production Process for Metal Matrix Nanocomposite Containing Oriented Graphene Sheets
Application: 15/935,636 →
Publication: US US20190292672A1
Metal Matrix Nanocomposite Containing Oriented Graphene Sheets and Production Process
Application: 15/935,624 →
Publication: US US20190292671A1
Chemical-Free Production of Graphene-Polymer Pellets and Graphene-Polymer Nanocomposite Products
Application: 15/991,714 →
Publication: US US20180272565A1
Unitary graphene material-based integrated finned heat sink
Patent: 9,835,390 →
Application: 13/694,791 →
Publication: US US20140190676A1
Inorganic Coating-Protected Unitary Graphene Material for Concentrated Photovoltaic Applications
Application: 13/815,100 →
Publication: US US20140209168A1
Nano graphene platelet-reinforced composite heat sinks and process for producing same
Application: 13/815,246 →
Publication: US US20140224466A1
Production of highly conductive graphitic films from polymer films
Application: 14/121,387 →
Publication: US US20160059444A1
Production of highly oriented graphene oxide films and graphitic films derived therefrom
Application: 14/756,006 →
Publication: US US20170021387A1
Highly Oriented Humic Acid Films and Highly Conducting Graphitic Films Derived Therefrom and Devices Containing Same
Application: 15/240,537 →
Publication: US US20180054921A1
Process for Producing Highly Oriented Humic Acid Films and Highly Conducting Graphitic Films Derived Therefrom
Patent: 9,988,273 →
Application: 15/240,543 →
Publication: US US20180050914A1
Single Crystal Graphene or Polycrystalline Graphene Matrix Composite Containing Carbon-Based Fillers
Application: 15/711,477 →
Publication: US US20180010028A1
Unitary Graphene-Based Composite Material
Application: 15/789,580 →
Publication: US US20180058782A1
Graphene oxide-coated graphitic foil and processes for producing same
Application: 15/862,199 →
Publication: US US20180144843A1
Graphene Paper Having High Through-Plane Conductivity and Production Process
Application: 15/864,991 →
Publication: US US20190210345A1
Metallized Graphene Foam Having High Through-Plane Conductivity
Application: 15/944,162 →
Publication: US US20190301814A1
Determining Surface Roughness
Application: 15/944,272 →
Publication: US US20180286058A1
Process for Nano Graphene Platelet-Reinforced Composite Material
Application: 16/108,233 →
Publication: US US20190002278A1
Production of Graphitic Films Directly from Highly Aromatic Molecules
Application: 16/361,748 →
Publication: US US20200299138A1
Graphene-Enhanced Vapor-Based Heat Transfer Device
Application: 16/395,800 →
Publication: US US20200340756A1
Expanded Graphite-Enhanced Vapor-Based Heat Transfer Device and Production Process
Application: 16/397,284 →
Publication: US US20200340757A1
Oriented Graphene Sheet-Enhanced Vapor-Based Heat Transfer Device and Process for Producing Same
Application: 16/397,295 →
Publication: US US20200339423A1
Highly conductive graphene foams and process for producing same
Application: 14/120,959 →
Publication: US US20160019995A1
Method of Producing Integral 3D Humic Acid-Carbon Hybrid Foam
Application: 15/228,133 →
Publication: US US20180037458A1
Process for Producing Humic Acid-Derived Conductive Foams
Application: 15/251,849 →
Publication: US US20180057360A1
Humic Acid-Derived Conductive Foams and Devices
Application: 15/251,841 →
Publication: US US20180057367A1
Chemical-Free Production of Hollow Graphene Balls
Application: 16/044,878 →
Publication: US US20200031671A1
Hollow Graphene Balls and Devices Containing Same
Application: 16/044,901 →
Publication: US US20200031677A1
Graphene Electrode Based Ceramic Capacitor
Application: 14/121,487 →
Publication: US US20160079001A1
Monolithic film of integrated highly oriented halogenated graphene
Application: 14/756,592 →
Publication: US US20170081194A1
Process for producing monolithic film of integrated highly oriented halogenated graphene sheets or molecules
Patent: 9,809,459 →
Application: 14/756,591 →
Publication: US US20170081193A1
Process for Producing Monolithic Film of Integrated Highly Oriented Halogenated Graphene Sheets or Molecules
Application: 15/705,890 →
Publication: US US20180016150A1
Graphene Oxide-Filled Polyimide Films and Process
Application: 15/915,892 →
Publication: US US20210125741A1
Black-Color Polymer Composite Films and Production Process
Application: 16/017,339 →
Publication: US US20180310442A1
Highly Conductive Graphitic Films and Production Process
Application: 15/251,857 →
Publication: US US20180061517A1
Dark-Color Polymer Composite Films
Application: 16/025,340 →
Publication: US US20200002505A1
Manufacturing Process for Dark-Color Polymer Composite Films
Application: 16/025,343 →
Publication: US US20200002506A1
Integral Graphene Films from Functionalized Graphene Sheets
Application: 15/980,005 →
Publication: US US20190352185A1
Process for Producing Integral Graphene Films from Functionalized Graphene Sheets
Application: 15/980,015 →
Publication: US US20190352186A1
Graphene-Mediated Metal-Plated Polymer Article and Production Method
Application: 15/813,996 →
Publication: US US20190144621A1
Continuous process for manufacturing graphene-mediated metal-plated polymer article
Application: 15/914,224 →
Publication: US US20190143367A1
Functionalized Graphene-Mediated Metallization of Polymer Article
Application: 15/922,024 →
Publication: US US20190145007A1
Conductive Graphene Mixture-Mediated Metallization of Polymer Article
Application: 15/924,957 →
Publication: US US20190283377A1
Apparatus for Graphene-Mediated Production of Metallized Polymer Articles
Application: 15/924,971 →
Publication: US US20190283378A1
Products Containing Graphene-Mediated Metallized Polymer Component
Application: 15/924,633 →
Publication: US US20190143656A1
Graphene-Mediated Metallization of Polymer Films
Application: 15/924,988 →
Publication: US US20190283379A1
Apparatus for Graphene-Mediated Metallization of Polymer Films
Application: 15/924,991 →
Publication: US US20190284712A1
Process for Graphene-Mediated Metallization of Polymer Films
Application: 15/926,458 →
Publication: US US20190292675A1
Graphene-Mediated Metallization of Fibers, Yarns, and Fabrics
Application: 15/926,474 →
Publication: US US20190292720A1
Process for Graphene-Mediated Metallization of Fibers, Yarns, and Fabrics
Application: 15/926,490 →
Publication: US US20190292721A1
Process for Graphene-Mediated Metallization of Polymer Films
Application: 15/943,081 →
Publication: US US20190292676A1
Process for Graphene-Mediated Metallization of Fibers, Yarns, and Fabrics
Application: 15/943,044 →
Publication: US US20190292722A1
Process for Graphene-Mediated Metallization of Polymer Article
Application: 15/943,087 →
Publication: US US20190143369A1
Graphene-Enabled Anti-Corrosion Coating
Application: 15/973,045 →
Publication: US US20190338146A1
Anti-Corrosion Material-Coated Discrete Graphene Sheets and Anti-Corrosion Coating Composition Containing Same
Application: 15/973,651 →
Publication: US US20190345344A1
Graphene-Enabled Method of Inhibiting Metal Corrosion
Application: 15/973,656 →
Publication: US US20190345345A1
Anti-Corrosion Coating Composition
Application: 16/030,105 →
Publication: US US20200010695A1
Graphene Foam-Based Sealing Materials
Application: 15/994,061 →
Publication: US US20190367371A1
Process for Producing Graphene Foam-Based Sealing Materials
Application: 15/994,071 →
Publication: US US20190367372A1
Graphene Foam Laminate-Based Sealing Materials
Application: 16/030,199 →
Publication: US US20200010748A1
Process for Producing Graphene Foam Laminate-Based Sealing Materials
Application: 16/030,221 →
Publication: US US20200009846A1
Continuous graphitic fibers from living graphene molecules
Application: 13/986,223 →
Publication: US US20140308517A1
Process for Fabric of Continuous Graphitic Fiber Yarns
Application: 15/475,454 →
Publication: US US20170211208A1
Apparatus and Methods for Image Alignment
Application: 15/978,714 →
Publication: US US20180262685A1
Process for Producing Continuous Graphene Fibers from Functionalized Graphene Sheets
Application: 15/978,730 →
Publication: US US20190345647A1
Fabric of Continuous Graphene Fiber Yarns from Functionalized Graphene Sheets
Application: 15/985,045 →
Publication: US US20190352805A1
Process for Producing Fabric of Continuous Graphene Fiber Yarns from Functionalized Graphene Sheets
Application: 15/985,053 →
Publication: US US20190352806A1
Highly conducting and transparent film and process for producing same
Application: 13/815,316 →
Publication: US US20140235123A1
Ultrasonic spray coating of conducting and transparent films from combined graphene and conductive nano filaments
Application: 13/815,729 →
Publication: US US20140272199A1
Elastomer-Encapsulated Particles of High-Capacity Anode Active Materials for Lithium Batteries
Application: 14/999,080 →
Publication: US US20170288211A1
Method of Manufacturing a Lithium Secondary Battery Having a Protected High-Capacity Anode Active Material
Application: 15/434,632 →
Publication: US US20180233736A1
Polymer Binder for Lithium Battery and Method of Manufacturing
Application: 15/442,278 →
Publication: US US20180248173A1
Encapsulated Anode Active Material Particles, Lithium Secondary Batteries Containing Same, and Method of Manufacturing
Application: 15/478,125 →
Publication: US US20180287142A1
Process for Graphene Foam-Protected Anode Active Materials for Lithium Batteries
Application: 15/651,528 →
Publication: US US20170317336A1
Hybrid Lithium Anode Electrode Layer and Lithium-Ion Battery Containing Same
Application: 15/665,606 →
Publication: US US20190044137A1
Protected Particles of Anode Active Materials, Lithium Secondary Batteries Containing Same and Method of Manufacturing
Application: 15/676,677 →
Publication: US US20190051904A1
Process for Prelithiating an Anode Active Material for a Lithium Battery
Application: 15/710,952 →
Publication: US US20190088922A1
Surface-Stabilized Anode Active Material Particulates for Lithium Batteries and Production Method
Application: 15/783,634 →
Publication: US US20190115617A1
Graphene-Enabled Niobium-Based Composite Metal Oxide as an Anode Active Material for a Lithium-Ion Battery
Application: 15/822,882 →
Publication: US US20190165364A1
Graphene Foam-Protected Niobium-Based Composite Metal Oxide Anode Active Materials for Lithium Batteries
Application: 15/822,871 →
Publication: US US20190165363A1
Protected Particles of Anode Active Materials for Lithium Batteries
Application: 15/901,367 →
Publication: US US20190260028A1
Method of Producing Protected Particles of Anode Active Materials for Lithium Batteries
Application: 15/906,207 →
Publication: US US20190260015A1
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
Conducting Elastomer Composite-Encapsulated Particles of Anode Active Materials for Lithium Batteries
Application: 15/910,465 →
Publication: US US20190273249A1
Method of Manufacturing Conducting Elastomer Composite-Encapsulated Particles of Anode Active Materials for Lithium Batteries
Application: 15/910,471 →
Publication: US US20190273250A1
Method of Producing Electrochemically Stable Elastomer-Encapsulated Particles of Anode Active Materials for Lithium Batteries
Application: 15/914,216 →
Publication: US US20190280301A1
Electrochemically Stable Elastomer-Encapsulated Particles of Anode Active Materials for Lithium Batteries
Application: 15/914,213 →
Publication: US US20190280291A1
Lithium Battery Anode Containing Silicon Nanowires Formed in situ in Pores of Graphene Foam
Application: 15/975,181 →
Publication: US US20180261847A1
Multi-Level Graphene-Protected Anode Active Material Particles for Battery Applications
Application: 15/996,144 →
Publication: US US20190372151A1
Method of Producing Multi-Level Graphene-Protected Anode Active Material Particles for Battery Applications
Application: 15/996,156 →
Publication: US US20190372099A1
Multi-Level Graphene-Protected Anode Active Material Particles for Fast-Charging Lithium-Ion Batteries
Application: 16/001,244 →
Publication: US US20190379039A1
Electrochemically Stable Anode Particulates for Lithium Secondary Batteries and Method of Production
Application: 16/160,257 →
Publication: US US20200119337A1
Production Method for Electrochemically Stable Anode Particulates for Lithium Secondary Batteries
Application: 16/160,283 →
Publication: US US20200119338A1
Porous Graphene Particulate-Protected Anode Active Materials for Lithium Batteries
Application: 16/163,955 →
Publication: US US20200127277A1
Process for Producing Porous Graphene Particulate-Protected Anode Active Materials for Lithium Batteries
Application: 16/163,964 →
Publication: US US20200127288A1
Chemical-Free Production of Protected Anode Active Material Particles for Lithium Batteries
Application: 16/199,817 →
Publication: US US20200168898A1
Graphite Protected Anode Active Material Particles for Lithium Batteries
Application: 16/199,910 →
Publication: US US20200168899A1
Graphite Protected Anode Active Material Particles for Rechargeable Lithium Batteries
Application: 16/238,079 →
Publication: US US20200212426A1
Chemical-Free Production of Graphene-Protected Porous Anode Particles for Lithium Batteries
Application: 16/238,029 →
Publication: US US20200168900A1
Chemical-Free Production Method of Graphene-Protected Porous Anode Particles for Lithium Batteries
Application: 16/238,040 →
Publication: US US20200168894A1
Electrochemically Stable Anode Particulates for Lithium Secondary Batteries
Application: 16/238,052 →
Publication: US US20200119353A1
Method of Producing Electrochemically Stable Anode Particulates for Lithium Secondary Batteries
Application: 16/238,061 →
Publication: US US20200119340A1
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
Production of Semiconductor Nanowires Directly from Solid Particles
Application: 16/250,491 →
Publication: US US20200234954A1
Process for Producing Semiconductor Nanowires and Nanowire-Graphene Hybrid Particulates
Application: 16/250,559 →
Publication: US US20200235380A1
Graphene-Carbon Hybrid Foam-Protected Anode Active Material Coating for Lithium-Ion Batteries
Application: 16/252,814 →
Publication: US US20200235392A1
Method of Producing Graphene-Carbon Hybrid Foam-Protected Anode Active Material Coating for Lithium-Ion Batteries
Application: 16/252,817 →
Publication: US US20200235393A1
Production of Metal Nanowires Directly from Metal Particles
Application: 16/258,849 →
Publication: US US20200238377A1
Process for Producing Metal Nanowires and Nanowire-Graphene Hybrid Particulates
Application: 16/258,854 →
Publication: US US20200243844A1
Environmentally Benign Process for Producing Graphene-Protected Anode Particles for Lithium Batteries
Application: 16/296,993 →
Publication: US US20200287216A1
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
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
Particulates of Polymer Electrolyte-Protected Anode Active Material Particles for Lithium-Ion Batteries
Application: 16/410,152 →
Publication: US US20200365880A1
Hybrid nano-filament cathode compositions for lithium metal or lithium ion batteries
Application: 12/009,259 →
Publication: US US20090186276A1
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
Graphene-Enabled Metal Fluoride and Metal Chloride Cathode Active Materials for Lithium Batteries
Application: 15/412,852 →
Publication: US US20180212247A1
Graphene Foam-Protected Metal Fluoride and Metal Chloride Cathode Active Materials for Lithium Batteries
Application: 15/416,850 →
Publication: US US20180212250A1
Exfoliated Graphite Worm-Protected Metal Fluoride and Metal Chloride Cathode Active Materials for Lithium Batteries
Application: 15/419,454 →
Publication: US US20180219214A1
Lithium Battery Cathode and Method of Manufacturing
Application: 15/442,803 →
Publication: US US20180248189A1
Cathode Active Material Layer for Lithium Secondary Battery and Method of Manufacturing
Application: 15/442,807 →
Publication: US US20180248190A1
Encapsulated Cathode Active Material Particles, Lithium Secondary Batteries Containing Same, and Method of Manufacturing
Application: 15/483,342 →
Publication: US US20180294474A1
Surface-Stabilized Cathode Active Material Particles, Lithium Secondary Batteries Containing Same, and Method of Manufacturing
Application: 15/785,351 →
Publication: US US20190115591A1
Multi-Level Graphene-Protected Battery Cathode Active Material Particles
Application: 15/996,167 →
Publication: US US20190372093A1
Method of Producing Multi-Level Graphene-Protected Cathode Active Material Particles for Battery Applications
Application: 15/996,183 →
Publication: US US20190372100A1
Method of Producing Electrochemically Stable Elastomer-Encapsulated Particles of Cathode Active Materials for Lithium Batteries
Application: 16/109,178 →
Publication: US US20200067079A1
Electrochemically Stable Elastomer-Encapsulated Particles of Cathode Active Materials for Lithium Batteries
Application: 16/109,142 →
Publication: US US20200067077A1
Protected Particles of Cathode Active Materials for Lithium Batteries
Application: 16/112,208 →
Publication: US US20200067080A1
Method of Producing Protected Particles of Cathode Active Materials for Lithium Batteries
Application: 16/112,225 →
Publication: US US20200067101A1
Particulates of Conducting Polymer Network-Protected Cathode Active Material Particles for Lithium Batteries
Application: 16/400,585 →
Publication: US US20200350589A1
Anode protective layer compositions for lithium metal batteries
Patent: 9,722,275 →
Application: 12/001,981 →
Publication: US US20090155676A1
Alkali metal secondary battery containing a dendrite-intercepting layer
Patent: 9,755,241 →
Application: 14/545,204 →
Publication: US US20160301078A1
Dendrite-Intercepting layer for alkali metal secondary battery
Patent: 9,755,236 →
Application: 14/545,203 →
Publication: US US20160301075A1
Lithium Metal Secondary Battery Containing Anode-Protecting Polymer Layer and Manufacturing Method
Application: 15/483,348 →
Publication: US US20180294476A1
Lithium Anode-Protecting Polymer Layer for a Lithium Metal Secondary Battery and Manufacturing Method
Application: 15/485,934 →
Publication: US US20180301707A1
Anode-Protecting Layer for a Lithium Metal Secondary Battery and Manufacturing Method
Application: 15/676,680 →
Publication: US US20190051905A1
Alkali Metal Secondary Battery Containing a Carbon Matrix- or Carbon Matrix Composite-based Dendrite-Intercepting Layer
Application: 15/680,955 →
Publication: US US20170373322A1
Carbon Matrix- and Carbon Matrix Composite-based Dendrite-Intercepting Layer for Alkali Metal Secondary Battery
Application: 15/680,919 →
Publication: US US20170373297A1
Lithium Metal Secondary Battery Featuring an Anode-Protecting Layer
Application: 16/014,614 →
Publication: US US20190393543A1
Chemical-Free Production of Surface-Stabilized Lithium Metal Particles, Electrodes and Lithium Battery Containing Same
Application: 16/042,376 →
Publication: US US20200028158A1
Lithium Metal Secondary Battery Containing an Electrochemically Stable Anode-Protecting Layer
Application: 16/113,651 →
Publication: US US20190393495A1
Method of Extending Cycle-Life of a Lithium Metal Secondary Battery
Application: 16/113,676 →
Publication: US US20190393496A1
Lithium Metal Secondary Battery Containing Two Anode-Protecting Layers
Application: 16/120,862 →
Publication: US US20190393485A1
Method of Improving Anode Stability in a Lithium Metal Secondary Battery
Application: 16/120,875 →
Publication: US US20190393486A1
Lithium Metal Secondary Battery Containing a Protected Lithium Anode
Application: 16/123,212 →
Publication: US US20190393487A1
Method of Protecting the Lithium Anode Layer in a Lithium Metal Secondary Battery
Application: 16/123,218 →
Publication: US US20190393482A1
Lithium Metal Secondary Battery Containing an Elastic Anode-Protecting Layer
Application: 16/166,536 →
Publication: US US20190393541A1
Method of Improving the Cycle Stability and Energy Density of a Lithium Metal Secondary Battery
Application: 16/166,574 →
Publication: US US20190393542A1
Lithium Metal Secondary Battery Containing Elastic Polymer Foam as an Anode-Protecting Layer
Application: 16/256,321 →
Publication: US US20200243854A1
Method of Improving Cycle Life of a Rechargeable Lithium Metal Battery
Application: 16/256,346 →
Publication: US US20200243838A1
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
Porous Particulates of Graphene Shell-Protected Alkali Metal, Electrodes, and Alkali Metal Battery
Application: 16/294,360 →
Publication: US US20200287206A1
Process for Producing Porous Particulates of Graphene Shell-Protected Alkali Metal, Electrodes, and Alkali Metal Battery
Application: 16/294,383 →
Publication: US US20200287207A1
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
Conducting Polymer Network-Based Cathode-Protecting Layer for Lithium Metal Secondary Battery
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Related Assignments (25)
Other recorded transfers of the patents in this record — the chain of ownership.
Assignment of Assignor's Interest Jul 29, 2015
From: ZHAMU, ARUNA; JANG, BOR Z.
To: NANOTEK INSTRUMENTS, INC.
Reel/Frame 036207/0703 →
Assignment of Assignor's Interest Apr 5, 2016
From: ZHAMU, ARUNA, DR; JANG, BOR Z, DR
To: NANOTEK INSTRUMENTS, INC
Reel/Frame 038361/0440 →
Assignment of Assignor's Interest Apr 5, 2016
From: ZHAMU, ARUNA, DR; JANG, BOR Z, DR; GUO, JIUSHENG; SONG, LULU
To: NANOTEK INSTRUMENTS, INC
Reel/Frame 038361/0661 →
Assignment of Assignor's Interest Apr 13, 2016
From: GUO, JIUSHENG
To: NANOTEK INSTRUMENTS, INC.
Reel/Frame 038427/0531 →
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, DR
To: NANOTEK INSTRUMENTS, INC
Reel/Frame 038464/0201 →
Assignment of Assignor's Interest Apr 19, 2016
From: ZHAMU, ARUNA
To: NANOTEK INSTRUMENTS, INC.
Reel/Frame 038463/0095 →
Assignment of Assignor's Interest May 27, 2016
From: JANG, BOR Z, DR
To: NANOTEK INSTRUMENTS, INC
Reel/Frame 038827/0427 →
Assignment of Assignor's Interest May 27, 2016
From: ZHAMU, ARUNA, DR
To: NANOTEK INSTRUMENTS, INC
Reel/Frame 038736/0991 →
Assignment of Assignor's Interest Aug 18, 2016
From: NANOTEK INSTRUMENTS, INC.
To: ANGSTRON MATERIALS, INC.
Reel/Frame 039473/0462 →
Assignment of Assignor's Interest Aug 18, 2016
From: JANG, BOR Z, DR
To: NANOTEK INSTRUMENTS, INC.
Reel/Frame 039475/0895 →
Assignment of Assignor's Interest Sep 8, 2016
From: ZHAMU, ARUNA, DR
To: NANOTEK INSTRUMENTS, INC.
Reel/Frame 039676/0751 →
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: YIN, JUN
To: NANOTEK INSTRUMENTS, INC.
Reel/Frame 040862/0196 →
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 Jan 5, 2017
From: HE, HUI
To: NANOTEK INSTRUMENTS, INC.
Reel/Frame 040862/0529 →
Assignment of Assignor's Interest Feb 7, 2017
From: LI, MINJIE
To: NANOTEK INSTRUMENTS, INC.
Reel/Frame 041188/0512 →
Assignment of Assignor's Interest Feb 27, 2017
From: FANG, QING
To: NANOTEK INSTRUMENTS, INC.
Reel/Frame 041386/0558 →
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 May 17, 2017
From: LIN, YI-JUN
To: NANOTEK INSTRUMENTS, INC.
Reel/Frame 042416/0464 →
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 Oct 2, 2017
From: ZHAMU, ARUNA; JANG, BOR Z
To: NANOTEK INSTRUMENTS, INC.
Reel/Frame 043752/0047 →