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Tantalum (oxy)nitride based photoanodes for solar-driven water oxidation

机译:钽(氧)氮化物基光阳极,用于太阳能驱动的水氧化

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摘要

Photoelectrochemical (PEC) water splitting is a very promising process to produce hydrogen as a clean energy carrier. To achieve 10% solar to hydrogen (STH) conversion efficiency required for practical applications, the current central task in PEC water splitting is the development of efficient photoelectrodes, particularly photoanodes for water oxidation, used in PEC cells. Tantalum (oxy)nitrides with bandgaps ranging from 2.5 to 1.9 eV, corresponding to theoretical STH efficiencies varying from 9.3% to 20.9%, are considered a class of attractive light adsorbers for use in photoanodes for PEC water oxidation and have attracted much recent research attention. In this review, the recent development of tantalum (oxy)nitride photoanodes is summarized. Special interest is focused on the synthesis methods of tantalum (oxy)nitride films and important approaches for improving PEC conversion efficiency and stability of these films as photoanodes. The future trends of tantalum (oxy)nitride based photoanodes are also discussed.
机译:光电化学(PEC)分解水是生产氢作为清洁能源载体的非常有前途的过程。为了达到实际应用所需的10%的太阳能到氢(STH)转换效率,PEC水分解的当前主要任务是开发用于PEC电池的高效光电电极,尤其是用于水氧化的光电阳极。带隙范围在2.5至1.9 eV之间的氮化(氧)氮化物,对应于理论STH效率在9.3%至20.9%之间变化,被认为是一类有吸引力的光吸收剂,可用于PEC水氧化的光阳极,并吸引了许多新的研究关注。在这篇综述中,总结了氮化钽(氧)光电阳极的最新发展。特别关注的是氮化钽(氧)薄膜的合成方法以及提高这些薄膜作为光电阳极的PEC转换效率和稳定性的重要方法。还讨论了基于钽(氧)氮化物的光阳极的未来趋势。

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