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- W2962474268 abstract "Solar energy driven photoelectrochemical (PEC) water splitting is a clean and powerful approach for renewable hydrogen production. The design and construction of metal oxide based nanoarray photoanodes is one of the promising strategies to make the continuous breakthroughs in solar to hydrogen conversion efficiency of PEC cells owing to their owned several advantages including enhanced reactive surface at the electrode/electrolyte interface, improved light absorption capability, increased charge separation efficiency and direct electron transport pathways. In this Review, we first introduce the structure, work principle and their relevant efficiency calculations of a PEC cell. We then give a summary of the state-of the-art research in the preparation strategies and growth mechanism for the metal oxide based nanoarrays, and some details about the performances of metal oxide based nanoarray photoanodes for PEC water splitting. Finally, we discuss key aspects which should be addressed in continued work on realizing high-efficiency metal oxide based nanoarray photoanodes for PEC solar water splitting systems." @default.
- W2962474268 created "2019-07-23" @default.
- W2962474268 creator A5015153086 @default.
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- W2962474268 creator A5061509885 @default.
- W2962474268 creator A5084665945 @default.
- W2962474268 creator A5090451872 @default.
- W2962474268 date "2019-09-01" @default.
- W2962474268 modified "2023-10-14" @default.
- W2962474268 title "Current progress in developing metal oxide nanoarrays-based photoanodes for photoelectrochemical water splitting" @default.
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