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An efficient and stable photoelectrochemical system with 9% solar-to-hydrogen conversion efficiency via InGaP/GaAs double junction
Purushothaman Varadhan, Hui Chun Fu, Yu Cheng Kao,
Ray Hua Horng
, Jr Hau He
*
*
此作品的通信作者
新世代功能性物質研究中心
電子研究所
研究成果
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同行評審
107
引文 斯高帕斯(Scopus)
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Keyphrases
Gallium Arsenide
100%
InGaP
100%
Double Junction
100%
Photoelectrochemical System
100%
Solar-to-hydrogen Efficiency
100%
Solar-to-hydrogen Conversion Efficiency
100%
III-V
50%
High Cost
50%
Wireless
50%
Light Harvesting
50%
Light Absorption
50%
Photoanode
50%
Photoelectrode
50%
Practical Implementation
50%
Ni Substrate
50%
Efficient Strategy
50%
Monolithically Integrated
50%
Epitaxial Lift-off
50%
Simple Strategy
50%
Photoelectrochemical Water Splitting
50%
III-V Semiconductors
50%
Photoelectrochemical Cell
50%
Electrocatalytic
50%
Decoupled Scheme
50%
Poor Stability
50%
Artificial Leaf
50%
Engineering
Gallium Arsenide
100%
Solar-to-Hydrogen Conversion Efficiency
100%
Hydrogen Efficiency
100%
Water Splitting
50%
Light Absorption
50%
III-V Semiconductor
50%
Ni Substrate
50%
Photoelectrochemical Cell
50%
Material Science
Gallium Arsenide
100%
Catalysis
50%
Photoelectrochemical Water Splitting
50%
III-V Semiconductor
50%
Photoelectrochemical Cell
50%
Physics
Water Splitting
100%
Electromagnetic Absorption
100%
Photoanode
100%