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Enhanced Photoelectrochemical Solar Water Splitting Using a Platinum-Decorated CIGS/CdS/ZnO Photocathode

机译:铂装饰CIGS / CdS / ZnO光电阴极增强的光电化学太阳能水分解

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摘要

A Cu(InGa)Se-2 film was modified with CdS/ZnO for application to solar water splitting. Platinum was electrodeposited on the ZnO layer as a hydrogen evolution catalyst. The effects of the electroplating time and acidity level of the electrolyte on the photocurrent density were studied. The highest photo current density of -32.5 mA/cm(2) under 1.5 AM illumination was achieved with an electroplating time of 30 min at a pH of 9. This photocurrent density is higher than those reported in previous studies. The markedly high performance of the CIGS/CdS/ZnO photocathode was rationalized in terms of its type II cascade structure that facilitated efficient charge separation at the interface junction.
机译:用CdS / ZnO修饰了Cu(InGa)Se-2膜,用于太阳能水分解。铂作为氢析出催化剂电沉积在ZnO层上。研究了电解液的电镀时间和酸度对光电流密度的影响。在pH为9的情况下,电镀时间为30分钟,在1.5 AM照射下获得的最高光电流密度为-32.5 mA / cm(2)。该光电流密度高于以前的研究报道。 CIGS / CdS / ZnO光电阴极的显着高性能通过其II型级联结构得以合理化,该结构促进了界面结处的有效电荷分离。

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