首页> 外文期刊>American Chemical Society, Division of Fuel Chemistry, Preprints >Earth-Abundant Cobalt Pyrite (CoS2) Thin Film on Glass as a Robust, High-Performance Counter Electrode for Quantum Dot-Sensitized Solar Cells
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Earth-Abundant Cobalt Pyrite (CoS2) Thin Film on Glass as a Robust, High-Performance Counter Electrode for Quantum Dot-Sensitized Solar Cells

机译:玻璃上的富含地球的黄铁矿(CoS2)薄膜,是用于量子点敏感型太阳能电池的稳健,高性能的对电极

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摘要

We report a cobalt pyrite (cobalt disulfide, CoS2) thin film on glass as a robust, high-performance, low-cost, earth-abundant counter electrode for liquid-junction quantum dot-sensitized solar cells (QDSSCs) that employ the aqueous sulfide/polysulfide (S2-/Sn2-) redox electrolyte as the hole-transporting medium. The metallic CoS2 thin film electrode is prepared via thermal sulfidation of a cobalt film deposited on glass, and has been characterized by powder X-ray diffraction and electron microscopy. Using the CoS2 counter electrode, CdS/CdSe-sensitized QDSSCs display improved short-circuit photocurrent density and fill factor, achieving solar light-to-electricity conversion efficiencies as high as 3.83%, with an average efficiency improvement of 54 (± 16)% over equivalent devices assembled with a traditional platinum counter electrode. Electrochemical measurements verify that CoS2 shows high electrocatalytic activity toward polysulfide reduction, rationalizing the improved QDSSC performance. CoS2 is also less susceptible to poisoning by the sulfide/polysulfide electrolyte, a problem that plagues platinum electrodes in this application; furthermore, CoS2 exhibits excellent stability in sulfide/polysulfide electrolyte, resulting in highly reproducible performance.
机译:我们报告玻璃上的黄铁矿钴(二硫化钴,CoS2)薄膜是一种坚固,高性能,低成本,富含地球的反电极,适用于采用硫化氢水溶液的液接量子点敏化太阳能电池(QDSSC) /多硫化物(S2- / Sn2-)氧化还原电解质作为空穴传输介质。金属CoS2薄膜电极是通过对玻璃上沉积的钴膜进行热硫化而制备的,并通过粉末X射线衍射和电子显微镜进行了表征。使用CoS2对电极,对CdS / CdSe敏感的QDSSC可以显示出改善的短路光电流密度和填充因子,实现了高达3.83%的太阳光电转换效率,平均效率提高了54(±16)%在装配有传统铂对电极的等效设备上。电化学测量结果证明,CoS2对多硫化物的还原显示出高电催化活性,从而使改进的QDSSC性能合理化。 CoS2也不易被硫化物/多硫化物电解质中毒,这是困扰铂电极的一个问题。此外,CoS2在硫化物/多硫化物电解质中显示出极好的稳定性,从而具有高度可再现的性能。

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    Department of Chemistry University of Wisconsin–Madison 1101 University Avenue Madison Wisconsin 53706 United States;

    Department of Chemistry University of Wisconsin–Madison 1101 University Avenue Madison Wisconsin 53706 United States;

    Department of Chemistry University of Wisconsin–Madison 1101 University Avenue Madison Wisconsin 53706 United States;

    Radiation Laboratory Department of Chemistry and Biochemistry University of Notre Dame Notre Dame Indiana 46556 United States;

    Department of Chemistry University of Wisconsin–Madison 1101 University Avenue Madison Wisconsin 53706 United States;

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