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Improving the efficiency of cadmium sulfide-sensitized titanium dioxide/indium tin oxide glass photoelectrodes using silver sulfide as an energy barrier layer and a light absorber

机译:使用硫化银作为能量阻挡层和光吸收剂提高硫化镉敏化的二氧化钛/铟锡氧化物玻璃光电电极的效率

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摘要

Cadmium sulfide (CdS) and silver sulfide (Ag2S) nanocrystals are deposited on the titanium dioxide (TiO2) nanocrystalline film on indium tin oxide (ITO) substrate to prepare CdS/Ag2S/TiO2/ITO photoelectrodes through a new method known as the molecular precursor decomposition method. The Ag2S is interposed between the TiO2 nanocrystal film and CdS nanocrystals as an energy barrier layer and a light absorber. As a consequence, the energy conversion efficiency of the CdS/Ag2S/TiO2/ITO electrodes is significantly improved. Under AM 1.5 G sunlight irradiation, the maximum efficiency achieved for the CdS(4)/Ag2S/TiO2/ITO electrode is 3.46%, corresponding to an increase of about 150% as compared to the CdS(4)/TiO2/ITO electrode without the Ag2S layer. Our experimental results show that the improved efficiency is mainly due to the formation of Ag2S layer that may increase the light absorbance and reduce the recombination of photogenerated electrons with redox ions from the electrolyte.
机译:将硫化镉(CdS)和硫化银(Ag2S)纳米晶体沉积在铟锡氧化物(ITO)衬底上的二氧化钛(TiO2)纳米晶体膜上,通过一种称为分子前体的新方法制备CdS / Ag2S / TiO2 / ITO光电极分解方法。将Ag 2 S插入在TiO 2纳米晶体膜和CdS纳米晶体之间作为能量阻挡层和光吸收剂。结果,CdS / Ag2S / TiO2 / ITO电极的能量转换效率大大提高。在AM 1.5 G阳光照射下,CdS(4)/ Ag2S / TiO2 / ITO电极实现的最大效率为3.46%,与不使用CdS(4)/ TiO2 / ITO电极相比增加了约150% Ag2S层。我们的实验结果表明,效率的提高主要归因于形成了Ag2S层,该层可以提高光吸收率并减少光生电子与电解质中氧化还原离子的重组。

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