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
Chemical-free production of graphene materials
Electrochemical Method Of Producing Single-Layer Or Few-Layer Graphene Sheets
Electrochemical production of graphene sheets directly from graphite mineral
Electrochemical Production of Graphene Sheets from Coke or Coal
Direct Ultrasonication Production of Graphene Sheets from Coke or Coal
Supercritical Fluid Process for Producing Graphene from Coke or Coal
Direct Microwave Production of Graphene
Microwave System and Method for Graphene Production
Eco-friendly Production of Graphene
Production of Graphene Materials Directly from Carbon/Graphite Precursor
Continuous Process and Apparatus for Producing Graphene
Production of Graphene Sheets from Highly Aromatic Molecules
Environmentally Benign Production of Graphene Oxide
Nano graphene platelet-based conductive inks
Application:
12/215,813 →
Publication:
US US20100000441A1
Patterned Nano Graphene Platelet-Based Conductive Inks
Environmentally Benign Production of Graphene Suspensions
Chemical-free production of graphene-reinforced inorganic matrix composites
Production Process for Metal Matrix Nanocomposite Containing Oriented Graphene Sheets
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
Inorganic Coating-Protected Unitary Graphene Material for Concentrated Photovoltaic Applications
Nano graphene platelet-reinforced composite heat sinks and process for producing same
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
Highly Oriented Humic Acid Films and Highly Conducting Graphitic Films Derived Therefrom and Devices Containing Same
Process for Producing Highly Oriented Humic Acid Films and Highly Conducting Graphitic Films Derived Therefrom
Single Crystal Graphene or Polycrystalline Graphene Matrix Composite Containing Carbon-Based Fillers
Unitary Graphene-Based Composite Material
Graphene oxide-coated graphitic foil and processes for producing same
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
Production of Graphitic Films Directly from Highly Aromatic Molecules
Graphene-Enhanced Vapor-Based Heat Transfer Device
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
Highly conductive graphene foams and process for producing same
Method of Producing Integral 3D Humic Acid-Carbon Hybrid Foam
Process for Producing Humic Acid-Derived Conductive Foams
Humic Acid-Derived Conductive Foams and Devices
Chemical-Free Production of Hollow Graphene Balls
Hollow Graphene Balls and Devices Containing Same
Graphene Electrode Based Ceramic Capacitor
Monolithic film of integrated highly oriented halogenated graphene
Process for producing monolithic film of integrated highly oriented halogenated graphene sheets or molecules
Process for Producing Monolithic Film of Integrated Highly Oriented Halogenated Graphene Sheets or Molecules
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
Manufacturing Process for Dark-Color Polymer Composite Films
Integral Graphene Films from Functionalized Graphene Sheets
Application:
15/980,005 →
Publication:
US US20190352185A1
Process for Producing Integral Graphene Films from Functionalized Graphene Sheets
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
Functionalized Graphene-Mediated Metallization of Polymer Article
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
Anti-Corrosion Material-Coated Discrete Graphene Sheets and Anti-Corrosion Coating Composition Containing Same
Graphene-Enabled Method of Inhibiting Metal Corrosion
Application:
15/973,656 →
Publication:
US US20190345345A1
Anti-Corrosion Coating Composition
Graphene Foam-Based Sealing Materials
Process for Producing Graphene Foam-Based Sealing Materials
Graphene Foam Laminate-Based Sealing Materials
Application:
16/030,199 →
Publication:
US US20200010748A1
Process for Producing Graphene Foam Laminate-Based Sealing Materials
Continuous graphitic fibers from living graphene molecules
Process for Fabric of Continuous Graphitic Fiber Yarns
Apparatus and Methods for Image Alignment
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
Process for Producing Fabric of Continuous Graphene Fiber Yarns from Functionalized Graphene Sheets
Highly conducting and transparent film and process for producing same
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
Method of Manufacturing a Lithium Secondary Battery Having a Protected High-Capacity Anode Active Material
Polymer Binder for Lithium Battery and Method of Manufacturing
Encapsulated Anode Active Material Particles, Lithium Secondary Batteries Containing Same, and Method of Manufacturing
Process for Graphene Foam-Protected Anode Active Materials for Lithium Batteries
Hybrid Lithium Anode Electrode Layer and Lithium-Ion Battery Containing Same
Protected Particles of Anode Active Materials, Lithium Secondary Batteries Containing Same and Method of Manufacturing
Process for Prelithiating an Anode Active Material for a Lithium Battery
Surface-Stabilized Anode Active Material Particulates for Lithium Batteries and Production Method
Graphene-Enabled Niobium-Based Composite Metal Oxide as an Anode Active Material for a Lithium-Ion Battery
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
Method of Producing Protected Particles of Anode Active Materials for Lithium Batteries
Elastomer Composite-Encapsulated Particles of Anode Active Materials for Lithium Batteries
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
Method of Manufacturing Conducting Elastomer Composite-Encapsulated Particles of Anode Active Materials for Lithium Batteries
Method of Producing Electrochemically Stable Elastomer-Encapsulated Particles of Anode Active Materials for Lithium Batteries
Electrochemically Stable Elastomer-Encapsulated Particles of Anode Active Materials for Lithium Batteries
Lithium Battery Anode Containing Silicon Nanowires Formed in situ in Pores of Graphene Foam
Multi-Level Graphene-Protected Anode Active Material Particles for Battery Applications
Method of Producing Multi-Level Graphene-Protected Anode Active Material Particles for Battery Applications
Multi-Level Graphene-Protected Anode Active Material Particles for Fast-Charging Lithium-Ion Batteries
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
Porous Graphene Particulate-Protected Anode Active Materials for Lithium Batteries
Process for Producing Porous Graphene Particulate-Protected Anode Active Materials for Lithium Batteries
Chemical-Free Production of Protected Anode Active Material Particles for Lithium Batteries
Graphite Protected Anode Active Material Particles for Lithium Batteries
Graphite Protected Anode Active Material Particles for Rechargeable Lithium Batteries
Chemical-Free Production of Graphene-Protected Porous Anode Particles for Lithium Batteries
Chemical-Free Production Method of Graphene-Protected Porous Anode Particles for Lithium Batteries
Electrochemically Stable Anode Particulates for Lithium Secondary Batteries
Method of Producing Electrochemically Stable Anode Particulates for Lithium Secondary Batteries
Process for Producing Graphene/Silicon Nanowire Hybrid Material for a Lithium-Ion Battery
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
Process for Producing Semiconductor Nanowires and Nanowire-Graphene Hybrid Particulates
Graphene-Carbon Hybrid Foam-Protected Anode Active Material Coating for Lithium-Ion Batteries
Method of Producing Graphene-Carbon Hybrid Foam-Protected Anode Active Material Coating for Lithium-Ion Batteries
Production of Metal Nanowires Directly from Metal Particles
Process for Producing Metal Nanowires and Nanowire-Graphene Hybrid Particulates
Environmentally Benign Process for Producing Graphene-Protected Anode Particles for Lithium Batteries
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
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
Method of Producing Protected Anode Active Material Particles for Rechargeable Lithium Batteries
Particulates of Polymer Electrolyte-Protected Anode Active Material Particles for Lithium-Ion Batteries
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
Graphene-Enabled Metal Fluoride and Metal Chloride Cathode Active Materials for Lithium Batteries
Graphene Foam-Protected Metal Fluoride and Metal Chloride Cathode Active Materials for Lithium Batteries
Exfoliated Graphite Worm-Protected Metal Fluoride and Metal Chloride Cathode Active Materials for Lithium Batteries
Lithium Battery Cathode and Method of Manufacturing
Cathode Active Material Layer for Lithium Secondary Battery and Method of Manufacturing
Encapsulated Cathode Active Material Particles, Lithium Secondary Batteries Containing Same, and Method of Manufacturing
Surface-Stabilized Cathode Active Material Particles, Lithium Secondary Batteries Containing Same, and Method of Manufacturing
Multi-Level Graphene-Protected Battery Cathode Active Material Particles
Method of Producing Multi-Level Graphene-Protected Cathode Active Material Particles for Battery Applications
Method of Producing Electrochemically Stable Elastomer-Encapsulated Particles of Cathode Active Materials for Lithium Batteries
Electrochemically Stable Elastomer-Encapsulated Particles of Cathode Active Materials for Lithium Batteries
Protected Particles of Cathode Active Materials for Lithium Batteries
Method of Producing Protected Particles of Cathode Active Materials for Lithium Batteries
Particulates of Conducting Polymer Network-Protected Cathode Active Material Particles for Lithium Batteries
Anode protective layer compositions for lithium metal batteries
Alkali metal secondary battery containing a dendrite-intercepting layer
Dendrite-Intercepting layer for alkali metal secondary battery
Lithium Metal Secondary Battery Containing Anode-Protecting Polymer Layer and Manufacturing Method
Lithium Anode-Protecting Polymer Layer for a Lithium Metal Secondary Battery and Manufacturing Method
Anode-Protecting Layer for a Lithium Metal Secondary Battery and Manufacturing Method
Alkali Metal Secondary Battery Containing a Carbon Matrix- or Carbon Matrix Composite-based Dendrite-Intercepting Layer
Carbon Matrix- and Carbon Matrix Composite-based Dendrite-Intercepting Layer for Alkali Metal Secondary Battery
Lithium Metal Secondary Battery Featuring an Anode-Protecting Layer
Chemical-Free Production of Surface-Stabilized Lithium Metal Particles, Electrodes and Lithium Battery Containing Same
Lithium Metal Secondary Battery Containing an Electrochemically Stable Anode-Protecting Layer
Method of Extending Cycle-Life of a Lithium Metal Secondary Battery
Lithium Metal Secondary Battery Containing Two Anode-Protecting Layers
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
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
Method of Improving the Cycle Stability and Energy Density of a Lithium Metal Secondary Battery
Lithium Metal Secondary Battery Containing Elastic Polymer Foam as an Anode-Protecting Layer
Method of Improving Cycle Life of a Rechargeable Lithium Metal Battery
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
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
Method of Improving the Cycle Stability of Lithium Metal Secondary Batteries
Conducting Polymer Network-Based Cathode-Protecting Layer for Lithium Metal Secondary Battery
Application:
16/411,645 →
Publication:
US US20200365902A1
Alkali metal-sulfur secondary battery containing a pre-sulfurized cathode and production process
Pre-sulfurized cathode for alkali metal-sulfur secondary battery and production process
Rechargeable Lithium-Sulfur Battery Having a High Capacity and Long Cycle Life
Lithium-sulfur secondary battery containing gradient electrolyte
Metal-Sulfur Battery Cathode Containing Humic Acid-Derived Conductive Foam Impregnated with Sulfur or Sulfide
Process for Metal-Sulfur Battery Cathode Containing Humic Acid-Derived Conductive Foam
Alkali Metal-Sulfur Secondary Battery Containing a Nano Sulfur-Loaded Cathode and Manufacturing Method
Alkali Metal-Sulfur Secondary Battery Containing a Protected Sulfur Cathode and Manufacturing Method
Alkali Metal-Sulfur Secondary Battery Containing a Polymer-Encapsulated Sulfur Cathode and Manufacturing Method
Alkali Metal-Sulfur Secondary Battery Containing a Hybrid Anode
Alkali Metal-Sulfur Secondary Battery Containing a Protected Sulfur Cathode Material and Manufacturing Method
Lithium-sulfur secondary battery containing gradient electrolyte
Alkali Metal-Sulfur Secondary Battery Containing Cathode Material Particulates
Method of Protecting Sulfur Cathode Materials for Alkali Metal-Sulfur Secondary Battery
Alkali Metal-Sulfur Secondary Battery Containing a Conductive Electrode- Protecting Layer
Method of Improving Cycle-Life of Alkali Metal-Sulfur Secondary Battery
Lithium-Sulfur Battery Containing an Electrode-Protecting Layer
Method of Extending Cycle-Life of a Lithium-Sulfur Battery
Alkali Metal-Sulfur Secondary Battery Containing a Non-Electronically Conductive Anode-Protecting Layer
Method of Improving the Charge/Discharge Cycle Life and Safety of an Alkali Metal-Sulfur Secondary Battery
Alkali Metal-Sulfur Secondary Battery Containing Conducting Polymer Network-Protected Cathode Material Particulates
Selenium Preloaded Cathode for Alkali Metal-Selenium Secondary Battery and Production Process
Alkali Metal-Selenium Secondary Battery Containing a Graphene Foam-Protected Selenium Cathode
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
Graphene-Enabled Selenium Cathode Active Material for an Alkali Metal-Selenium Secondary Battery
Surface-Stabilized Selenium Particles, Alkali Metal-Selenium Secondary Battery Containing Same, and Method of Manufacturing
Alkali Metal-Selenium Secondary Battery Containing a Cathode of Protected Selenium
Application:
15/952,532 →
Publication:
US US20190319263A1
Manufacturing Method for Alkali Metal-Selenium Secondary Battery Containing a Cathode of Protected Selenium
Alkali Metal-Selenium Secondary Battery Containing a Cathode of Encapsulated Selenium Particles
Process for Alkali Metal-Selenium Secondary Battery Containing a Cathode of Encapsulated Selenium Particles
Selenium Loaded Mesoporous Carbon Cathode for Alkali Metal-Selenium Secondary Battery
Application:
15/956,312 →
Publication:
US US20190326587A1
Manufacturing Method for Selenium Preloaded Mesoporous Carbon Cathode for Alkali Metal-Selenium Secondary Battery
Alkali Metal-Selenium Secondary Battery Containing a Graphene-Based Separator Layer
Method of Alkali Metal-Selenium Secondary Battery Containing a Graphene-Based Separator Layer
Lithium-Selenium Battery Containing an Electrode-Protecting Layer and Method for Improving Cycle-Life
Lithium-Selenium Battery Containing an Electrode-Protecting Layer and Method of Improving Cycle-Life
Rechargeable dual electroplating cell
Partially and fully surface-enabled transition metal ion-exchanging energy storage devices
Application:
14/545,126 →
Publication:
US US20160293954A1
Partially and fully surface-enable metal ion-exchanging energy storage devices
Application:
14/545,239 →
Publication:
US US20160301102A1
Zinc Ion-Exchanging Energy Storage Device
Battery Having a Low Output Voltage
Aluminum Secondary Battery Having a High-Capacity and High Energy Cathode and Manufacturing Method
Aluminum Secondary Battery Having an Exfoliated Graphite-Based High-Capacity Cathode and Manufacturing Method
Aluminum Secondary Battery Having a High-Capacity and High-Rate Capable Cathode and Manufacturing Method
Aluminum Secondary Battery Cathode Having Oriented Graphene
Graphitic Carbon-Based Cathode for Aluminum Secondary Battery and Manufacturing Method
Multivalent Metal Ion Battery and Manufacturing Method
Multivalent Metal Ion Battery Having a Cathode of Recompressed Graphite Worms and Manufacturing Method
Multivalent Metal Ion Battery Having a Cathode Layer of Protected Graphitic Carbon and Manufacturing Method
Partially and Fully Surface-Enabled Transition Metal Ion-Exchanging Energy Storage Devices
Solvent-free process based graphene electrode for energy storage devices
Application:
13/507,739 →
Publication:
US US20140030590A1
Rechargeable lithium batteries having an ultra-high volumetric energy density and required production process
Process for producing lithium batteries having an ultra-high energy density
Rolled 3D Alkali Metal Batteries and Production Process
Anode Particulates or Cathode Particulates and Alkali Metal Batteries Containing Same
Method of Producing Anode or Cathode Particulates for Alkali Metal Batteries
Anode Particulates or Cathode Particulates and Alkali Metal Batteries
Method of Producing Particulate Electrode Materials for Alkali Metal Batteries
Application:
15/860,176 →
Publication:
US US20190173079A1
Continuous Process for Producing Electrodes and Alkali Metal Batteries Having Ultra-High Energy Densities
Non-Flammable Quasi-Solid Electrolyte-Separator Layer Product for Lithium Battery Applications
Process for producing non-flammable quasi-solid electrolyte and electrolyte-separator for lithium battery applications
Solid state electrolyte for lithium secondary battery
Hybrid Solid State Electrolyte for Lithium Secondary Battery
Non-flammable Quasi-Solid Electrolyte and Lithium Secondary Batteries Containing Same
Application:
15/468,080 →
Publication:
US US20180277913A1
Lithium Secondary Battery Containing Non-Flammable Electrolyte and Manufacturing Method
Non-flammable Electrolyte Containing Liquefied Gas and Lithium Secondary Batteries Containing Same
Fire-Resistant Lithium Battery Containing an Electrode-Protecting Layer
Method of Improving Fire-Resistance of a Lithium Battery
Hybrid Solid State Electrolyte for Lithium Sulfur Secondary Battery
Process for Producing Graphene Oxide-Bonded Metal Foil Thin Film Current Collector for a Battery or Supercapacitor
Humic Acid-Bonded Metal Foil Film Current Collector and Battery and Supercapacitor Containing Same
Process for Producing Flexible and Shape-Conformal Cable-Type Alkali Metal Batteries
Application:
15/384,781 →
Publication:
US US20180175434A1
Flexible and Shape-Conformal Cable-Type Alkali Metal Batteries
Process for Flexible and Shape-Conformal Cable-Shape Alkali Metal-Sulfur Batteries
Application:
15/391,379 →
Publication:
US US20180183052A1
Flexible and Shape-Conformal Rope-Shape Alkali Metal Batteries
Process for Producing Flexible and Shape-Conformal Rope-Shape Alkali Metal Batteries
Process for Flexible and Shape-Conformal Rope-Shape Alkali Metal-Sulfur Batteries
Process for Flexible and Shape-Conformal Rope-Shape Supercapacitors
Shape-Conformable Alkali Metal Battery Having a Conductive and Deformable Quasi-solid Polymer Electrode
Method of Producing a Shape-Conformable Alkali Metal Battery Having a Conductive and Deformable Quasi-solid Polymer Electrode
Method of Producing Shape-Conformable Alkali Metal-Sulfur Battery Having a Deformable and Conductive Quasi-Solid Electrode
Shape-Conformable Alkali Metal-Sulfur Battery Having a Deformable and Conductive Quasi-Solid Electrode
Fast-Chargeable Lithium Battery
Method of Improving Fast-Chargeability of a Lithium Battery
Fast-Chargeable Lithium Battery Electrodes
Application:
16/038,798 →
Publication:
US US20200028205A1
Method of Improving Fast-Chargeability of a Lithium-Ion Battery
High-Power and Fast-Chargeable Lithium Battery
Method of Improving Power Density and Fast-Chargeability of a Lithium Secondary Battery
Hybrid electrode and surface-mediated cell-based super-hybrid energy storage device containing same
Application:
13/374,408 →
Publication:
US US20130171502A1
Surface-mediated cell-powered portable computing devices and methods of operating same
Surface-mediated cell-driven power tools and methods of operating same
Partially Surface-Mediated Lithium Ion-Exchanging Cells and Method for Operating Same
Nano-Scaled Graphene Plates
Patent:
7,071,258 →
Application:
10/274,473 →
Low-Temperature Method of Producing Nano-Scaled Graphene Platelets and Their Nanocomposites
Method of Producing Nano-Scaled Graphene and Inorganic Platelets and Their Nanocomposites
Highly Conductive Nano-Scaled Graphene Plate Nanocomposites
Nano-Scaled Graphene Plate-Reinforced Composite Materials and Method of Producing Same
Mass Production of Nano-Scaled Platelets and Products
Supercritical fluid process for producing nano graphene platelets
Method of Producing Exfoliated Graphite, Flexible Graphite, and Nano-Scaled Graphene Platelets
Mass Production of Pristine Nano Graphene Materials
Method of Producing Nano-Scaled Inorganic Platelets
Method of Producing Nano-Scaled Graphene and Inorganic Platelets and Their Nanocomposites
Electrochemical Method of Producing Nano-Scaled Graphene Platelets
Environmentally benign graphite intercalation compound composition for exfoliated graphite, flexible graphite, and nano-scaled graphene platelets
Nano-Scaled Graphene Platelets with a High Length-to-Width Aspect Ratio
Submicron-scale graphitic fibrils, methods for producing same and compositions containing same
Chemically Functionalized Submicron Graphitic Fibrils, Methods for Producing Same and Compositions Containing Same
Production of ultra-thin nano-scaled graphene platelets from meso-carbon micro-beads
One-step production of graphene materials
Production of Graphene Materials in a Cavitating Fluid
Environmentally benign production of graphene materials
Process for Producing Dispersible and Conductive Nano Graphene Platelets from Non-Oxidized Graphitic Materials
Process for Producing Dispersible Nano Graphene Platelets from Oxidized Graphite
Dispersible and conductive Nano Graphene Platelets
Production of Chemically Functionalized Nano Graphene Materials
Production Process for Chemically Functionalized Nano Graphene Materials
Process for Producing Chemically Functionalized Nano Graphene Materials
Chemical-Free Production of Graphene-Reinforced Polymer Matrix Composites
Nano-scaled graphene plate films and articles
Graphene oxide gel bonded graphene composite films and processes for producing same
Thermal management system containing an integrated graphene film for electronic devices
Integrated Graphene Film Heat Spreader for Display Devices
Graphene Oxide-Coated Graphitic Foil and Processes for Producing Same
Thermal Management System Containing a Graphene Oxide-Coated Graphitic Foil Laminate for Electronic Device Application
Unitary graphene layer or graphene single crystal
Unitary graphene matrix composites containing carbon or graphite fillers
Graphene Composite Hand-Held and Hand-Heated Thawing Tool
Process for Producing Unitary Graphene Materials
Process for producing highly oriented graphene films
Process for producing highly conducting graphitic films from graphene liquid crystals
Process for Producing Unitary Graphene Matrix Composites Containing Carbon or Graphite Fillers
Production Process for Highly Conducting and Oriented Graphene Film
Production process for highly conductive graphitic films
Highly Conductive Graphitic Films
Highly conducting graphitic films from graphene liquid crystals
Process for Producing Highly Oriented Graphene Films
Patent:
10,059,592 →
Application:
15/408,045 →
Heat Dissipation System Comprising a Unitary Graphene Monolith
Nano graphene-modified curing agents for thermoset resins
Nano Graphene-Modified Lubricant
Pristine Nano Graphene-Modified Tires
Highly oriented graphene structures and process for producing same
Chemical-Free Production of 3D Graphene-Carbon Hybrid Foam
Patent:
9,597,657 →
Application:
14/998,357 →
Integral 3D graphene-carbon hybrid foam and devices containing same
Integral 3D Humic Acid-Carbon Hybrid Foam and Devices Containing Same
Integral 3D Graphene-Carbon Hybrid Foam Separation Device
Patent:
10,058,842 →
Application:
15/995,782 →
Integral 3D graphene-carbon hybrid foam
Flexible fingerprint sensor materials and processes
Process for producing continuous graphitic fibers from living graphene molecules
Impregnated continuous graphitic fiber tows and composites containing same
Fabric of continuous graphitic fiber yarns from living graphene molecules
Process for Producing Highly conducting and Transparent Films From Graphene Oxide-Metal Nanowire Hybrid Materials
Method for producing conducting and transparent films from combined graphene and conductive nano filaments
Graphene Oxide-Metal Nanowire Transparent Conductive Film
Carbon anode compositions for lithium ion batteries
Process for Producing Carbon Anode Compositions for Lithium Ion Batteries
Graphite or carbon particulates for the lithium ion battery anode
Hybrid nano-filament anode compositions for lithium ion batteries
Conductive Nanocomposite-Based Electrodes for Lithium Batteries
Method of Producing Prelithiated Anodes for Secondary Lithium Ion Batteries
Secondary Lithium Ion Battery Containing a Prelithiated Anode
Methods for mass-producing silicon nano powder and graphene-doped silicon nano powder
Anode active material-coated graphene sheets for lithium batteries and process for producing same
Anode containing active material-coated graphene sheets and lithium-ion batteries containing same
Process for Mass-Producing Silicon Nanowires and Silicon Nanowire-Graphene Hybrid Particulates
Process for Producing Silicon Nanowires Directly from Silicon Particles
Graphene foam-protected anode active materials for lithium batteries
Lithium Ion Battery Anode Containing Silicon Nanowires Grown in situ in Pores of Graphene Foam and Production Process
Chemical-Free Production of Graphene-Encapsulated Electrode Active Material Particles for Battery Applications
Process for Silicon Nanowire-Graphene Hybrid Mat
Lithium Secondary Batteries Containing Protected Particles of Anode Active Materials and Method of Manufacturing
Surface-Stabilized and Prelithiated Anode Active Materials for Lithium Batteries and Production Method
Chemical-Free Production of Graphene-Wrapped Electrode Active Material Particles for Battery Applications
Graphene-Enhanced cathode materials for lithium batteries
Mixed nano-filament electrode materials for lithium ion batteries
Method of producing hybrid nano-filament electrodes for lithium metal or lithium ion batteries
Process for producing hybrid nano-filament electrodes for lithium batteries
Graphene-enabled vanadium oxide cathode and lithium cells containing same
Lithium-ion cell having a high-capacity anode and a high-capacity cathode
Rechargeable lithium cell having a phthalocyanine-based high-capacity cathode
Rechargeable lithium cell having a meso-porous conductive material structure-supported phthalocyanine compound cathode
Rechargeable lithium cell having a chemically bonded phthalocyanine compound cathode
Cathode active material-coated discrete graphene sheets for lithium batteries and process for producing same
Method of operating a lithium-ion cell having a high-capacity cathode
Nano-Structured Anode Compositions for Lithium Metal and Lithium Metal-Air Secondary Batteries
Anode compositions for lithium secondary batteries
Alkali Metal Secondary Battery Containing a Carbon Matrix- or Carbon Matrix Composite-based Dendrite-Intercepting Layer
Carbon matrix-and carbon matrix composite-based dendrite-Intercepting layer for alkali metal secondary battery
Separator for Nonaqueous Secondary Battery, and Nonaqueous Secondary Battery
Lithium metal-sulfur and lithium ion-sulfur secondary batteries containing a nano-structured cathode and processes for producing same
Conductive Graphene Polymer Binder for Electrochemical Cell Electrodes
Active Cathode Layer for Metal-Sulfur Secondary Battery
Method of Producing Deformable Quasi-Solid Electrode Material for Alkali Metal Batteries
Patent:
9,960,451 →
Application:
15/604,606 →
Alkali Metal Battery Having a Deformable Quasi-Solid Electrode Material
Lithium-Selenium Secondary Batteries Having Non-Flammable Electrolyte
Rechargeable magnesium-ion cell having a high-capacity cathode
Partially and fully surface-enabled metal ion-exchanging energy storage devices
Partially and fully surface-enabled alkali metal ion-exchanging energy storage devices
Magnesium-sulfur secondary battery containing a metal polysulfide-preloaded active cathode layer
Lithium-ion Cell Having a High-Capacity Cathode
Alkali metal or Alkali-Ion batteries having high volumetric and gravimetric energy densities
Process for producing alkali metal or alkali-ion batteries having high volumetric and gravimetric energy densities
Patent:
9,564,656 →
Application:
14/756,509 →
Continuous process for producing electrodes and alkali metal batteries having ultra-high energy densities
Lithium Secondary Batteries Containing Lithium Salt-Ionic Liquid Solvent Electrolyte
Lithium secondary batteries containing non-flammable quasi-solid electrolyte
Non-Flammable Quasi-Solid Electrolyte and Non-Lithium Alkali Metal or Alkali-Ion Secondary Batteries Containing Same
Prelithiated current collector and secondary lithium cells containing same
Large-grain graphene thin film current collector and secondary batteries containing same
Graphene Oxide-Bonded Metal Foil Thin Film Current Collector and Battery and Supercapacitor Containing Same
Process for Producing Humic Acid-Bonded Metal Foil Film Current Collector
Flexible and Shape-Conformal Cable-Shape Alkali Metal-Sulfur Batteries
Flexible and Shape-Conformal Rope-Shape Alkali Metal-Sulfur Batteries
Patent:
9,905,856 →
Application:
15/392,213 →
Lithium super-battery with a functionalized nano graphene cathode
Lithium super-battery with a chemically functionalized disordered carbon cathode
Surface -controlled lithium ion-exchanging energy storage device
Surface-mediated lithium ion-exchanging energy storage device
Partially surface-mediated lithium ion-exchanging cells and method for operating same
Stacks of internally connected surface-mediated cells and methods of operating same
Surface-mediated cell-powered vehicles and methods of operating same
Surface-Mediated Cells with High Power Density and High Energy Density
Inorganic nano sheet-enabled lithium-exchanging surface-mediated cells
Lithium-ion cell having a high energy density and high power density
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 →