Patent Assignment
Reel/Frame 038463/0095
Assignment of Assignor's Interest
Recorded: 2016-04-19
Pages: 18
Assignor
ZHAMU, ARUNA
Executed: 2013-10-26
Assignee
NANOTEK INSTRUMENTS, INC.
1240 MCCOOK AVENUE, DAYTON, OHIO, 45404
Covered Properties
(152)
Nano Graphene Platelet-Based Composite Anode Compositions for Lithium Batteries
PCT:
PCT/US2008/082183 ↗
Nano-Scaled Graphene Plate-Reinforced Composite Materials and Method of Producing Same
Organic vapor fuel cell
Self-Humidifying Proton Exchange Membrane, Membrane-Electrode Assembly, and Fuel Cell
Method for Producing Highly Conductive Sheet Molding Compound, Fuel Cell Flow Field Plate, and Bipolar Plate
Method of manufacturing integrated bipolar plate/diffuser components for proton exchange membrane fuel cells
Application:
11/293,690 →
Publication:
US 2007/0126137
Integrated bipolar plate/diffuser for a proton exchange membrane fuel cell
Application:
11/293,706 →
Publication:
US 2007/0128494
Highly conductive composites for fuel cell flow field plates and bipolar plates
Application:
11/324,370 →
Publication:
US 2007/0154771
Highly Conductive Nano-Scaled Graphene Plate Nanocomposites
Controlled-Release Vapor Fuel Cell
Hybrid fiber tows containning both nano-fillers and continuous fibers, hybrid composites, and their production processes
Application:
11/491,657 →
Publication:
US 2008/0020193
Nano-Scaled Graphene Plate Nanocomposites for Supercapacitor Electrodes
Patent:
7,623,340 →
Application:
11/499,861 →
Process for producing nano-scaled platelets and nanocompsites
Application:
11/509,424 →
Publication:
US 2008/0048152
Dissolved-fuel direct alcohol fuel cell
Application:
11/515,340 →
Publication:
US 2008/0057381
Electro-Catalyst Composition, Fuel Cell Electrode, and Membrane-Electrode Assembly
Process for Producing Fuel Cell Electrode
Mass Production of Nano-Scaled Platelets and Products
Bio-responsive and electrically conductive polymer compositions for tissue engineering and methods for production
Application:
11/543,413 →
Publication:
US 2008/0083908
Precursor Electro-Catalyst Compositions for Fuel Cell Electrodes
Home hydrogen fueling station
Application:
11/636,666 →
Publication:
US 2008/0135403
Hydrogen generation and storage method for personal transportation applications
Application:
11/636,706 →
Publication:
US 2008/0138675
Process for producing carbon-cladded composite bipolar plates for fuel cells
Application:
11/644,477 →
Publication:
US 2008/0149900
Heater Unit and Thermal Fusion Apparatus for Synthetic Resin Members and Thermal Fusion Method for Synthetic Resin Members
Pressure Regulator for a Fuel Supply Unit and Method for Production of a Pressure Regulator
Fuel cell electro-catalyst composite composition, electrode, catalyst-coated membrane, and membrane-electrode assembly
Application:
11/699,176 →
Publication:
US 2008/0182153
Conducting polymer-transition metal electro-catalyst compositions for fuel cells
Method of Producing Nano-Scaled Graphene and Inorganic Platelets and Their Nanocomposites
Highly Conductive, Multi-Layer Composite Precursor Composition to Fuel Cell Flow Field Plate or Bipolar Plate
Nano-scaled graphene plate films and articles
Low-Temperature Method of Producing Nano-Scaled Graphene Platelets and Their Nanocomposites
Method of Producing Exfoliated Graphite, Flexible Graphite, and Nano-Scaled Graphene Platelets
Exfoliated graphite composite compositions for fuel cell flow field plates
Application:
11/800,729 →
Publication:
US 2008/0277628
Method of Producing Exfoliated Graphite Composite Compositions for Fuel Cell Flow Field Plates
Laminated exfoliated graphite composite-metal compositions for fuel cell flow field plate or bipolar plate applications
Method of Producing Conducting Polymer-Transition Metal Electro-Catalyst Composition and Electrodes for Fuel Cells
Method for producing ultra-thin nano-scaled graphene platelets
Application:
11/879,680 →
Publication:
US 2009/0022649
Electrochemical Method of Producing Nano-Scaled Graphene Platelets
Environmentally benign chemical oxidation method of producing graphite intercalation compound, exfoliated graphite, and nano-scaled graphene platelets
Application:
11/881,389 →
Publication:
US 2009/0028777
Environmentally benign graphite intercalation compound composition for exfoliated graphite, flexible graphite, and nano-scaled graphene platelets
Carbon anode compositions for lithium ion batteries
Method of producing graphite-carbon composite electrodes for supercapacitors
Method of producing less anisotropic flexible graphite
Application:
11/899,008 →
Publication:
US 2009/0057940
Recompressed exfoliated graphite articles
Continious Production of Exfoliated Graphite Composite Compositions and Flow Field Plates
Process for Producing Nano-Scaled Graphene Platelet Nanocomposite Electrodes for Supercapacitors
Process for Producing Carbon Anode Compositions for Lithium Ion Batteries
Hybrid Anode Compositions for Lithium Ion Batteries
Nano Graphene Platelet-Based Composite Anode Compositions for Lithium Ion Batteries
Anode protective layer compositions for lithium metal batteries
Nano-Scaled Graphene Platelets with a High Length-to-Width Aspect Ratio
Process for producing laminated exfoliated graphite composite-metal compositions for fuel cell bipolar plate applications
Application:
12/002,279 →
Publication:
US 2009/0151847
Production of ultra-thin nano-scaled graphene platelets from meso-carbon micro-beads
Hybrid nano-filament anode compositions for lithium ion batteries
Mixed nano-filament electrode materials for lithium ion batteries
Hybrid nano-filament cathode compositions for lithium metal or lithium ion batteries
Application:
12/009,259 →
Publication:
US 2009/0186276
Method of producing hybrid nano-filament electrodes for lithium metal or lithium ion batteries
Process for producing hybrid nano-filament electrodes for lithium batteries
Conductive Nanocomposite-Based Electrodes for Lithium Batteries
Nano graphene platelet-based conductive inks
Application:
12/215,813 →
Publication:
US 2010/0000441
Graphene nanocomposites for electrochemical cell electrodes
Supercritical fluid process for producing nano graphene platelets
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
Method of Producing Prelithiated Anodes for Secondary Lithium Ion Batteries
Nano graphene reinforced nanocomposite particles for lithium battery electrodes
Secondary Lithium Ion Battery Containing a Prelithiated Anode
Process for producing nano graphene reinforced composite particles for lithium battery electrodes
Nano graphene-modified curing agents for thermoset resins
Production of Chemically Functionalized Nano Graphene Materials
Mass Production of Pristine Nano Graphene Materials
Nano Graphene-Modified Lubricant
Pristine Nano Graphene-Modified Tires
Nano-Structured Anode Compositions for Lithium Metal and Lithium Metal-Air Secondary Batteries
Submicron-scale graphitic fibrils, methods for producing same and compositions containing same
Nano-Scaled Graphene Plate-Reinforced Composite Materials and Method of Producing Same
Application:
12/639,443 →
Publication:
US 2010/0092723
Conductive Graphene Polymer Binder for Electrochemical Cell Electrodes
Spacer-Modified Nano Graphene Electrodes for Supercapacitors
Lithium metal-sulfur and lithium ion-sulfur secondary batteries containing a nano-structured cathode and processes for producing same
Continuous process for producing spacer-modified nano Graphene electrodes for supercapacitors
Anode compositions for lithium secondary batteries
Flexible asymmetric electrochemical cells using nano graphene platelet as an electrode material
Submicron-Scale and Lower-Micron Graphitic Fibrils as an Anode Active Material for a Lithium Ion Battery
Chemically Functionalized Submicron Graphitic Fibrils, Methods for Producing Same and Compositions Containing Same
Graphite or carbon particulates for the lithium ion battery anode
Supercapacitor with a meso-porous nano graphene electrode
Lithium super-battery with a functionalized nano graphene cathode
Graphene-Enhanced cathode materials for lithium batteries
Graphene-Enhanced Anode Particulates for Lithium Ion Batteries
Lithium super-battery with a chemically functionalized disordered carbon cathode
Surface -controlled lithium ion-exchanging energy storage device
Partially and fully surface-enabled metal ion-exchanging energy storage devices
Highly Conductive Composites for Fuel Cell Flow Field Plates and Bipolar Plates
Graphene-enabled vanadium oxide cathode and lithium cells containing same
Prelithiated current collector and secondary lithium cells containing same
Surface-mediated lithium ion-exchanging energy storage device
Partially surface-mediated lithium ion-exchanging cells and method for operating same
Method of Producing Nano-Scaled Inorganic Platelets
One-step production of graphene materials
Stacks of internally connected surface-mediated cells and methods of operating same
Hybrid electrode and surface-mediated cell-based super-hybrid energy storage device containing same
Application:
13/374,408 →
Publication:
US 2013/0171502
Surface-mediated cell-powered vehicles and methods of operating same
Surface-Mediated Cells with High Power Density and High Energy Density
Surface-mediated cell-powered portable computing devices and methods of operating same
Surface-mediated cell-driven power tools and methods of operating same
Inorganic nano sheet-enabled lithium-exchanging surface-mediated cells
Lithium-ion cell having a high-capacity anode and a high-capacity cathode
Graphene oxide gel bonded graphene composite films and processes for producing same
Lithium-ion cell having a high energy density and high power density
Thermal management system containing an integrated graphene film for electronic devices
Method of operating a lithium-ion cell having a high-capacity cathode
Rechargeable magnesium-ion cell having a high-capacity cathode
Rechargeable lithium cell having a phthalocyanine-based high-capacity cathode
Rechargeable dual electroplating cell
Integrated Graphene Film Heat Spreader for Display Devices
Rechargeable lithium cell having a meso-porous conductive material structure-supported phthalocyanine compound cathode
Solvent-free process based graphene electrode for energy storage devices
Application:
13/507,739 →
Publication:
US 2014/0030590
Production Process for Chemically Functionalized Nano Graphene Materials
Process for Producing Chemically Functionalized Nano Graphene Materials
Rechargeable lithium cell having a chemically bonded phthalocyanine compound cathode
Encapsulated phthalocyanine particles, high-capacity cathode containing these particles, and rechargeable lithium cell containing such a cathode
Spacer-modified graphene electrode for supercapacitor
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
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
Highly conducting and transparent film and process for producing same
Process for Producing Highly conducting and Transparent Films From Graphene Oxide-Metal Nanowire Hybrid Materials
Process for Producing Unitary Graphene Materials
Ultrasonic spray coating of conducting and transparent films from combined graphene and conductive nano filaments
Application:
13/815,729 →
Publication:
US 2014/0272199
Method for producing conducting and transparent films from combined graphene and conductive nano filaments
Fuel Cell Stack for Preventing Deterioration of End Cell
Process for producing continuous graphitic fibers from living graphene molecules
Continuous graphitic fibers from living graphene molecules
Rechargeable Lithium-Sulfur Battery Having a High Capacity and Long Cycle Life
Lithium-sulfur secondary battery containing gradient electrolyte
Lithium secondary batteries containing non-flammable quasi-solid electrolyte
Electrochemical Method of Producing Nano Graphene Platelets
Process for producing non-flammable quasi-solid electrolyte and electrolyte-separator for lithium battery applications
Methods for mass-producing silicon nano powder and graphene-doped silicon nano powder
Impregnated continuous graphitic fiber tows and composites containing same
Fabric of continuous graphitic fiber yarns from living graphene molecules
Anode containing active material-coated graphene sheets and lithium-ion batteries containing same
Anode active material-coated graphene sheets for lithium batteries and process for producing same
Cathode active material-coated discrete graphene sheets for lithium batteries and process for producing same
Non-Flammable Quasi-Solid Electrolyte and Non-Lithium Alkali Metal or Alkali-Ion Secondary Batteries Containing Same
Lithium-Selenium Secondary Batteries Having Non-Flammable Electrolyte
Large-grain graphene thin film current collector and secondary batteries containing same
Related Assignments
(20)
Other recorded transfers of the patents in this record — the chain of ownership.
Assignment of Assignor's Interest
Sep 5, 2013
From: SONG, LULU; ZHAMU, ARUNA; GUO, JIUSHENG; JANG, BOR Z.
To: NANOTEK INSTRUMENTS, INC.
Reel/Frame 031142/0141 →
Confirmatory License
Apr 24, 2014
From: NANOTEK INSTRUMENTS, INC.
To: ENERGY, UNITED STATES DEPARTMENT OF
Reel/Frame 032797/0587 →
Confirmatory License
Apr 24, 2014
From: NANOTEK INSTRUMENTS, INC.
To: ENERGY, UNITED STATES DEPARTMENT OF
Reel/Frame 032797/0100 →
Confirmatory License
Apr 24, 2014
From: NANOTEK INSTRUMENTS, INC.
To: ENERGY, UNITED STATES DEPARTMENT OF
Reel/Frame 032797/0082 →
Assignment of Assignor's Interest
Jun 3, 2014
From: NANOTEK INSTRUMENTS, INC.
To: SAMSUNG ELECTRONICS CO., LTD.
Reel/Frame 033014/0077 →
Confirmatory License
Mar 25, 2015
From: NANOTEK INSTRUMENTS, INC.
To: ENERGY,UNITED STATES DEPARTMENT OF
Reel/Frame 035335/0693 →
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 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; YU, ZHENNING; LIU, CHENGUANG
To: NANOTEK INSTRUMENTS, INC
Reel/Frame 038362/0001 →
Assignment of Assignor's Interest
Apr 6, 2016
From: ZHAMU, ARUNA, DR; JANG, BOR Z, DR; GUO, JIUSHENG; SONG, LULU
To: NANOTEK INSTRUMENTS, INC
Reel/Frame 038363/0682 →
Assignment of Assignor's Interest
Apr 12, 2016
From: YU, ZHENNING
To: NANOTEK INSTRUMENTS, INC.
Reel/Frame 038413/0894 →
Assignment of Assignor's Interest
Apr 12, 2016
From: YU, ZHENNING
To: NANOTEK INSTRUMENTS, INC.
Reel/Frame 038414/0604 →
Assignment of Assignor's Interest
Apr 13, 2016
From: LIU, CHENGUANG
To: NANOTEK INSTRUMENTS, INC.
Reel/Frame 038428/0440 →
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 18, 2016
From: LIU, CHENGUANG
To: NANOTEK INSTRUMENTS, INC.
Reel/Frame 038454/0993 →
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
Aug 18, 2016
From: NANOTEK INSTRUMENTS, INC.
To: ANGSTRON MATERIALS, INC.
Reel/Frame 039473/0462 →
Assignment of Assignor's Interest
Feb 28, 2018
From: ANGSTRON MATERIALS, INC.
To: NANOTEK INSTRUMENTS, INC.
Reel/Frame 045063/0187 →
Assignment of Assignor's Interest
Jul 17, 2019
From: NANOTEK INSTRUMENTS, INC.
To: GLOBAL GRAPHENE GROUP, INC.
Reel/Frame 049784/0650 →
Assignment of Assignor's Interest
Jul 18, 2019
From: NANOTEK INSTRUMENTS, INC.
To: NANOTEK INSTRUMENTS GROUP, LLC
Reel/Frame 049787/0643 →