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Hetero-type dual photoanodes for unbiased solar water splitting with extended light harvesting

机译:异型双光阳极,用于无偏分的太阳能水分离,并具有扩展的光收集功能

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摘要

Metal oxide semiconductors are promising photoelectrode materials for solar water splitting due to their robustness in aqueous solutions and low cost. Yet, their solar-to-hydrogen conversion efficiencies are still not high enough for practical applications. Here we present a strategy to enhance the efficiency of metal oxides, hetero-type dual photoelectrodes, in which two photoanodes of different bandgaps are connected in parallel for extended light harvesting. Thus, a photoelectrochemical device made of modified BiVO4 and α-Fe2O3 as dual photoanodes utilizes visible light up to 610 nm for water splitting, and shows stable photocurrents of 7.0±0.2 mA cm−2 at 1.23 VRHE under 1 sun irradiation. A tandem cell composed with the dual photoanodes–silicon solar cell demonstrates unbiased water splitting efficiency of 7.7%. These results and concept represent a significant step forward en route to the goal of >10% efficiency required for practical solar hydrogen production.
机译:金属氧化物半导体由于其在水溶液中的坚固性和低成本而成为有希望用于太阳能水分解的光电极材料。然而,它们的太阳能到氢的转换效率仍然不足以用于实际应用。在这里,我们提出了一种提高金属氧化物效率的策略,即异型双光电极,其中两个不同带隙的光阳极并联连接以扩展光收集。因此,由改性的BiVO4和α-Fe2O3作为双光阳极的光电化学装置利用高达610 nm的可见光进行水分解,并在1次太阳辐射下在1.23 VRHE下显示7.0±0.2 mA cm-2的稳定光电流。由双光阳极-硅太阳能电池组成的串联电池表现出7.7%的无偏分水效率。这些结果和概念代表了朝着实现实际太阳能制氢所需的效率> 10%的目标迈出的重要一步。

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