Patent Assignment
Reel/Frame 049787/0643
Assignment of Assignor's Interest
Recorded: 2019-07-18
Pages: 11
Assignor
NANOTEK INSTRUMENTS, INC.
Executed: 2016-06-17
Assignee
NANOTEK INSTRUMENTS GROUP, LLC
1240 MCCOOK AVE., DAYTON, OHIO, 45404
Covered Properties
(81)
Apparatus and Process for Producing Fiber Reinforced Composite Objects
Patent:
5,936,861 →
Application:
08/911,227 →
Process and Apparatus for Creating a Colorful Three-Dimensional Object
Patent:
6,129,872 →
Application:
09/143,734 →
Apparatus for Quantitative Stereoscopic Radiography
Patent:
6,115,449 →
Application:
09/169,478 →
Quantitative Stereoscopic Radiography Method
Patent:
6,118,843 →
Application:
09/169,828 →
Layer Manufacturing Apparatus and Process
Patent:
6,401,002 →
Application:
09/302,247 →
Rapid Prototyping and Tooling System
Patent:
6,405,095 →
Application:
09/318,779 →
3-D Color Model Making Apparatus and Process
Patent:
6,165,406 →
Application:
09/321,278 →
Layer Manufacturing Using Focused Chemical Vapor Deposition
Patent:
6,180,049 →
Application:
09/340,887 →
Layer Manufacturing Using Deposition of Fused Droplets
Patent:
6,401,001 →
Application:
09/358,871 →
High-Energy Planetary Ball Milling Apparatus and Method for the Preparation of Nanometer-Sized Powders
Patent:
6,126,097 →
Application:
09/379,146 →
Apparatus and Process for Freeform Fabrication of Composite Reinforcement Preforms
Patent:
6,214,279 →
Application:
09/410,913 →
Method for rapidly making a 3-D food object
Patent:
6,280,784 →
Application:
09/501,648 →
Rapid prototyping and fabrication method for 3-D food objects
Patent:
6,280,785 →
Application:
09/537,115 →
Layer-Additive Method and Apparatus for Freeform Fabrication of 3-D Objects
Layer Manufacturing Using Electrostatic Imaging and Lamination
Patent:
6,376,148 →
Application:
09/764,025 →
Process and Apparatus for the Production of Nanometer-Sized Powders
Patent:
6,398,125 →
Application:
09/780,598 →
Layer Manufacturing of a Multi-Material or Multi-Color 3-D Object Using Electrostatic Imaging and Lamination
Method for Producing Environmentally Stable Reactive Alloy Powders
Patent:
6,444,009 →
Application:
09/833,727 →
Direct Write Method for Polarized Materials
Dynamic Filtration Method and Apparatus for Separating Nano Powders
Method for Production of Nano-Porous Coatings
Patent:
6,465,052 →
Application:
09/996,325 →
Method for the Production of Semiconductor Quantum Particles
Manufacturing Method for Thin-Film Solar Cells
Direct Write Process and Apparatus
Nanocomposite Compositions for Hydrogen Storage and Methods for Supplying Hydrogen to Fuel Cells
Organic vapor fuel cell
Self-Humidifying Proton Exchange Membrane, Membrane-Electrode Assembly, and Fuel Cell
Sheet molding compound flow field plate, bipolar plate 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
Controlled-Release Vapor Fuel Cell
Nano-Scaled Graphene Plate Nanocomposites for Supercapacitor Electrodes
Patent:
7,623,340 →
Application:
11/499,861 →
Electro-Catalyst Composition, Fuel Cell Electrode, and Membrane-Electrode Assembly
Process for Producing Fuel Cell Electrode
Precursor Electro-Catalyst Compositions for Fuel Cell Electrodes
Carbon cladded composite flow field plate, bipolar plate and fuel cell
Process for producing carbon-cladded composite bipolar plates for fuel cells
Application:
11/644,477 →
Publication:
US 2008/0149900
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
Highly Conductive, Multi-Layer Composite Precursor Composition to Fuel Cell Flow Field Plate or Bipolar Plate
Method of Storing and Generating Hydrogen for Fuel Cell Applications
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 of producing graphite-carbon composite electrodes for supercapacitors
Graphite-Carbon Composite Electrode 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 laminated exfoliated graphite composite-metal compositions for fuel cell bipolar plate applications
Application:
12/002,279 →
Publication:
US 2009/0151847
Graphene nanocomposites for electrochemical cell electrodes
Spacer-Modified Nano Graphene Electrodes for Supercapacitors
Continuous process for producing spacer-modified nano Graphene electrodes for supercapacitors
Flexible asymmetric electrochemical cells using nano graphene platelet as an electrode material
Supercapacitor with a meso-porous nano graphene electrode
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
Highly Conductive Composites for Fuel Cell Flow Field Plates and Bipolar Plates
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
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 energy density and high power density
Spacer-modified graphene electrode for supercapacitor
Production Process for a Supercapacitor Having a High Volumetric Energy Density
Porous Particles of Interconnected 3D Graphene as a Supercapacitor Electrode Active Material and Production Process
Continuous Process for Producing Electrodes for Supercapacitors Having High Energy Densities
Method of producing supercapacitor electrodes and cells having high active mass loading
Supercapacitor having an integral 3D graphene-carbon hybrid foam-based electrode
Process for Producing Graphene Foam Supercapacitor Electrode
Patent:
9,437,372 →
Application:
14/998,474 →
Supercapacitor Having Highly Conductive Graphene Foam Electrode
Supercapacitor electrode having highly oriented and closely packed graphene sheets and production process
Related Assignments
(4)
Other recorded transfers of the patents in this record — the chain of ownership.
Assignment of Assignor's Interest
Apr 18, 2016
From: HUANG, WEN C.
To: NANOTEK INSTRUMENTS, INC.
Reel/Frame 038303/0191 →
Assignment of Assignor's Interest
Apr 19, 2016
From: HUANG, W C
To: NANOTEK INSTRUMENTS, INC
Reel/Frame 038312/0781 →
Assignment of Assignor's Interest
Jun 20, 2016
From: JANG, JUSTIN
To: NANOTEK INSTRUMENTS, INC.
Reel/Frame 039078/0518 →
Assignment of Assignor's Interest
Jul 31, 2017
From: JANG, BOR Z
To: NANOTEK INSTRUMENTS, INC.
Reel/Frame 043378/0290 →