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TiO
2
/ZrO
2
Nanoparticle Composites for Electrochemical Hydrogen Evolution
Kiran Pal Singh
, Choel Hwan Shin
, Ha Young Lee
, Fatemeh Razmjooei
, Apurba Sinhamahapatra
, Joonhee Kang
,
Jong Sung Yu
Department of Energy and Science and Engineering
Daegu Gyeongbuk Institute of Science and Technology
Indian Institute of Technology, Dhanbad
Korea Institute of Energy Research
Research output
:
Contribution to journal
›
Article
›
peer-review
47
Scopus citations
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2
/ZrO
2
Nanoparticle Composites for Electrochemical Hydrogen Evolution'. Together they form a unique fingerprint.
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Chemistry
Nanoparticle
100%
Titanium Dioxide
100%
Hydrogen
100%
Composite Material
100%
Chemical Reaction
30%
Semiconductor
20%
Charge Transfer
20%
Catalyst
20%
Adsorption
20%
Time
10%
Current Density
10%
Resistance
10%
Band Gap
10%
Conductivity
10%
Reduction
10%
Analytical Method
10%
Electronic State
10%
Proton
10%
Material Science
Composite Material
100%
Hydrogen Evolution
100%
Electronics
30%
Catalyst
20%
Oxygen Vacancy
20%
Zirconia
20%
Semiconductor Material
10%
Material
10%
Surface
10%
Heterojunction
10%
Metal Oxide
10%
Density
10%
Conductivity
10%
Analytical Method
10%
Wide Bandgap Semiconductor
10%