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- W2801847183 abstract "Abstract Collecting and storing solar energy to hydrogen fuel through a photo‐electrochemical (PEC) cell provides a clean and renewable pathway for future energy demands. Having earth‐abundance, low biotoxicity, robustness, and an ideal n‐type band position, hematite (α‐Fe 2 O 3 ), the most common natural form of iron oxide, has occupied the research hotspot for decades. Here, a close look into recent progress of hematite photoanodes for PEC water splitting is provided. Effective approaches are introduced, such as cocatalysts loading and surface passivation layer deposition, to improve the hematite surface reaction in thermodynamics and kinetics. Second, typical methods for enhancing light absorption and accelerating charge transport in hematite bulk are reviewed, concentrating upon doping and nanostructuring. Third, the back contact between hematite and substrate, which affects interface states and electron transfer, is deliberated. In addition, perspectives on the key challenges and future prospects for the development of hematite photoelectrodes for PEC water splitting are given." @default.
- W2801847183 created "2018-05-17" @default.
- W2801847183 creator A5004343457 @default.
- W2801847183 creator A5032082469 @default.
- W2801847183 creator A5047030779 @default.
- W2801847183 creator A5070771374 @default.
- W2801847183 date "2018-05-11" @default.
- W2801847183 modified "2023-10-16" @default.
- W2801847183 title "Surface, Bulk, and Interface: Rational Design of Hematite Architecture toward Efficient Photo‐Electrochemical Water Splitting" @default.
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