|
Immiscible-Multilayer Battery Electrode Architecture
Reference #: 1738
The University of South Carolina is offering licensing opportunities for Immiscible-Multilayer Battery Electrode Architecture.
Background:
Battery electrodes undergo volumetric expansion and contraction during electrochemical cycling. While this effect is modest in intercalation-based electrodes such as layered transition-metal...
Published: 7/10/2026
|
Updated: 2/17/2026
|
Inventor(s): Golareh Jalilvand, Avinash Raulo
Keywords(s):
Category(s): Energy
|
|
Chemical Crosslinking of PVDF Binder for Battery Electrodes
Reference #: 1682
The University of South Carolina is offering licensing opportunities for Chemical Crosslinking of PVDF Binder for Battery Electrodes.
Background:
Various three-dimensional network structures of crosslinked polymer binders have been developed to improve the electrode structure and cell performance of batteries at high active material...
Published: 7/10/2026
|
Updated: 11/19/2024
|
Inventor(s): Golareh Jalilvand, Avinash Raulo
Keywords(s):
Category(s): Advanced Materials, Energy, Chemistry and Biochemistry, Environmental and Sustainability, Engineering and Physical Sciences
|
|
Lithium Sulfur Battery Electrode Process
Reference #: 01598
The University of South Carolina is offering licensing opportunities for Lithium Sulfur Battery Electrode Process
Background:
Sulfur is a promising candidate for next-generation cathodes in Li battery systems. However, modern Li-S cathodes cannot be extensively cycled.
Invention Description:
The present innovation provides a...
Published: 7/10/2026
|
Updated: 11/18/2022
|
Inventor(s): Golareh Jalilvand, William Mustain, Saheed Lateef, Marjanul Manjum
Keywords(s): Binder, cathode, Dissolution, Electrode, Lithium-Sulfur, Sulfur, Swollen
Category(s): Engineering and Physical Sciences, Energy
|