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Single-Crystal Semiconductors with Narrow Band Gaps for Solar Water Splitting

机译:具有窄带隙的单晶半导体用于太阳能水分离

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摘要

Solar water splitting provides a clean and renewable approach to produce hydrogen energy. In recent years, single-crystal semiconductors such as Si and InP with narrow band gaps have demonstrated excellent performance to drive the half reactions of water splitting through visible light due to their suitable band gaps and low bulk recombination. This Minireview describes recent research advances that successfully overcome the primary obstacles in using these semiconductors as photoelectrodes, including photocorrosion, sluggish reaction kinetics, low photovoltage, and unfavorable planar substrate surface. Surface modification strategies, such as surface protection, cocatalyst loading, surface energetics tuning, and surface texturization are highlighted as the solutions.
机译:太阳能水分解提供了一种清洁可再生的方式来产生氢能。近年来,由于具有合适的带隙和低的本体重组,具有窄带隙的诸如Si和InP的单晶半导体已经表现出优异的性能来驱动水分解通过可见光的半反应。这份Minireview描述了最近的研究进展,这些进展成功克服了将这些半导体用作光电极的主要障碍,包括光腐蚀,反应动力学迟钝,低光电压和不利的平面基板表面。解决方案重点介绍了表面改性策略,例如表面保护,助催化剂负载,表面能学调节和表面纹理化。

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