Paving the road toward the use of β-Fe(2)O(3) in solar water splitting: Raman identification, phase transformation and strategies for phase stabilization

为β-Fe(2)O(3)在太阳能分解水中的应用铺平道路:拉曼光谱鉴定、相变及相稳定策略

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Abstract

Although β-Fe(2)O(3) has a high theoretical solar-to-hydrogen efficiency because of its narrow band gap, the study of β-Fe(2)O(3) photoanodes for water splitting is elusive as a result of their metastable nature. Raman identification of β-Fe(2)O(3) is theoretically and experimentally investigated in this study for the first time, thus clarifying the debate about its Raman spectrum in the literature. Phase transformation of β-Fe(2)O(3) to α-Fe(2)O(3) was found to potentially take place under laser and electron irradiation as well as annealing. Herein, phase transformation of β-Fe(2)O(3) to α-Fe(2)O(3) was inhibited by introduction of Zr doping, and β-Fe(2)O(3) was found to withstand a higher annealing temperature without any phase transformation. The solar water splitting photocurrent of the Zr-doped β-Fe(2)O(3) photoanode was increased by 500% compared to that of the pure β-Fe(2)O(3) photoanode. Additionally, Zr-doped β-Fe(2)O(3) exhibited very good stability during the process of solar water splitting. These results indicate that by improving its thermal stability, metastable β-Fe(2)O(3) film is a promising photoanode for solar water splitting.

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