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Integration of 1-D MnO2 Nanowire and 2-D Graphene to 3-D Composites and their Applications in High-Energy, High-Power and Low-Cost Aqueous Supercapacitors
Wayne State University researchers have developed a novel method for the preparation of unique 3-D composites of conductive graphene and high capacitance MnO2 as electrode materials, to fabricate asymmetric aqueous supercapacitors for energy-storage applications. Currently MnO2 is commonly coated onto current collectors to form very thin films...
Published: 4/16/2021
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Inventor(s):
Lixin Wang
,
Da Deng
,
Ka Yuen Simon Ng
Keywords(s):
Category(s):
Materials
,
Nanomaterials
,
Physical Sciences
,
Energy & Environment
,
Energy Storage/Battery
Dispersion-optimized Silicon nanoparticle (SiNP)/Graphene composite anode for high performance Lithium ion battery (LIB)
WSU researchers have invented a novel method to produce dispersion-optimized SiNP within a conducting Graphene matrix forming a standalone composite anode material. The method creates small clusters to lone particle distributions maximizing the nanomaterial properties of SiNP yielding anodes with improved capacity retention and rate performance. It...
Published: 8/26/2021
|
Inventor(s):
Rhet C De Guzman
,
Ka Yuen Simon Ng
,
Steven Salley
Keywords(s):
Category(s):
Chemicals
,
Materials
,
Energy & Environment
,
Energy Storage/Battery
,
Nanomaterials
,
Physical Sciences