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Toward Tandem Solar Cells for Water Splitting Using Polymer Electrolytes

机译:朝向串联太阳能电池使用聚合物电解质分裂

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Tandem photoelectrochemical cells, formed by two photoelectrodes with complementary light absorption, have been proposed to be a viable approach for obtaining clean hydrogen. This requires the development of new designs that allow for upscaling, which would be favored by the use of transparent polymer electrolyte membranes (PEMs) instead of conventional liquid electrolytes. This article focuses on the photoelectrochemical performance of a water-splitting tandem cell based on a phosphorus-modified alpha-Fe2O3 photoanode and on an iron-modified CuO photocathode, with the employment of an alkaline PEM. Such a photoelectrochemical cell works even in the absence of bias, although significant effort should be directed to the optimization of the photoelectrode/ PEM interface. In addition, the results reveal that the employment of polymer electrolytes increases the stability of the device, especially in the case of the photocathode.
机译:已经提出了由具有互补光吸收的两种光电子形成的串联光电化细胞,以获得清洁氢的可行方法。 这需要开发允许升高的新设计,这将由使用透明聚合物电解质膜(PEMS)代替常规液体电解质来青睐。 本文侧重于基于磷改性的α-Fe2O3光电码和铁改性CuO光电阴极的水分解串联电池的光电化学性能,并采用碱性PEM。 即使在没有偏差的情况下,这种光电化学电池也适用于,尽管应该针对光电极/ PEM界面的优化来进行大量努力。 此外,结果表明,聚合物电解质的就业增加了装置的稳定性,特别是在光电阴极的情况下。

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