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Origami-Inspired 3D Interconnected Molybdenum Carbide Nanoflakes
Ryota Koizumi
, Sehmus Ozden
, Atanu Samanta
, Ana Paula P. Alves
, Avanish Mishra
, Gonglan Ye
, Glaura G. Silva
, Robert Vajtai
, Abhishek K. Singh
, Chandra S. Tiwary
, Pulickel M. Ajayan
Rice University
Los Alamos National Laboratory
Indian Institute of Science Bangalore
Universidade Federal de Minas Gerais
Indian Institute of Technology Gandhinagar
Research output
:
Contribution to journal
›
Article
›
peer-review
16
Scopus citations
Overview
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Keyphrases
3D Interconnects
100%
Chemical Vapor Deposition Method
33%
Connected Structure
33%
Current Density
33%
Electrodes for Supercapacitors
33%
Energy Applications
33%
Energy Storage Devices
33%
Excellent Activity
33%
First-principles Density Functional Theory
33%
Flakes
66%
Generation Power
33%
High Stability
33%
High Thermal Stability
33%
Highly Elastic
33%
Hydrogen Evolution Reaction
33%
Interconnection Architectures
33%
Molybdenum Carbide
100%
Nanoflakes
100%
Origami
33%
Origami Structure
100%
Over Potential
33%
Polypyrrole
33%
Specific Capacitance
33%
Sponge-like
33%
Supercapacitor
33%
Surface Energy
33%
Transition Metal Carbides
33%
Water-splitting Photocatalyst
33%
Material Science
Capacitance
33%
Carbide
100%
Catalysis
33%
Chemical Vapor Deposition
33%
Density
66%
Hydrogen Evolution
33%
Molybdenum
100%
Polypyrrole
33%
Supercapacitors
66%
Surface Energy
33%
Transition Metal Carbide
33%
Water Splitting
33%