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Platinized Counter Electrodes for Dye Sensitized Solar Cells Through the Redox Replacement of a Low Power Electrodeposited Lead Sacrificial Template

机译:通过氧化还原替代低功率电沉积铅牺牲模板,染色对染料敏化太阳能电池

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The mass production of photovoltaics, such as dye sensitized solar cells (DSCs), is of great interest to the renewable energy generation industry. DSCs are low cost, photoelectrochemical devices that use sensitized-TiO_2, to generate electricity. Due to the need for an efficient platinum redox catalyst to facilitate electron return to the oxidized dye after electron injection this communication presents a fast, high performing, low cost platinisation process, leading to a viable in-line method of applying catalytic platinum. This method entails a low power deposition of Pb onto FTO-glass followed by the redox replacement of Pb by Pt ions in solution. When applied as a DSC counter electrode, the resulting cells gave efficiencies of 3% compared with standard cells using thermally platinized counter electrodes at 3.9%.
机译:光伏的批量生产,如染料敏化太阳能电池(DSCs),对可再生能源发电行业感兴趣。 DSCS是低成本,光电化学器件,使用敏感 - TiO_2,产生电力。由于需要高效的铂氧化还原催化剂,以便在电子注入后促进电子返回到氧化染料,该通信呈现快速,高的性能低成本的平板化过程,导致施用催化铂的可行的在线方法。该方法需要Pb到FTO玻璃上的低功率沉积,然后通过溶液中的Pt离子替换Pb。当施加为DSC对电极时,与使用热镀锌计数器电极的标准电池相比,所得细胞的效率为3%,在3.9%下。

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