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Cobalt-Based Electrolytes for Dye-Sensitized Solar Cells: Recent Advances towards Stable Devices

机译:染料敏化太阳能电池的钴基电解质:稳定器件的最新进展

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Redox mediators based on cobalt complexes allowed dye-sensitized solar cells (DSCs) to achieve efficiencies exceeding 14%, thus challenging the emerging class of perovskite solar cells. Unfortunately, cobalt-based electrolytes demonstrate much lower long-term stability trends if compared to the traditional iodide/triiodide redox couple. In view of the large-scale commercialization of cobalt-based DSCs, the scientific community has recently proposed various approaches and materials to increase the stability of these devices, which comprise gelling agents, crosslinked polymeric matrices and mixtures of solvents (including water). This review summarizes the most significant advances recently focused towards this direction, also suggesting some intriguing way to fabricate third-generation cobalt-based photoelectrochemical devices stable over time.
机译:基于钴配合物的氧化还原介体使染料敏化太阳能电池(DSC)的效率超过14%,从而挑战了新兴的钙钛矿太阳能电池类别。不幸的是,与传统的碘化物/三碘化物氧化还原对相比,钴基电解质表现出低得多的长期稳定性趋势。鉴于钴基DSC的大规模商业化,科学界最近提出了各种方法和材料来提高这些装置的稳定性,其中包括胶凝剂,交联的聚合物基体和溶剂(包括水)的混合物。这篇综述总结了最近朝这个方向发展的最重要进展,也提出了一些有趣的方法来制造随时间稳定的第三代钴基光电化学器件。

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