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Recent Progress of Graphene-Based Photoelectrode Materials for Dye-Sensitized Solar Cells

机译:基于石墨烯的光电极材料的最近进展染料敏化太阳能电池

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Graphite with a single atomic layer known as graphene shows great capability in energy conversion and storage devices. Dye-sensitized solar cells (DSSCs) have attracted intense interests due to offering high photo-to-electric conversion efficiencies. DSSCs are built from a photoelectrode (a dye-sensitized nanocrystalline semiconductor), an electrolyte with redox couples, and a counterelectrode. In this review article, we outline the strategies to enhance the efficiency and reduce the cost by introducing graphene into the DSSCs as the photoelectrode. First, the development of DSSCs and the properties of graphene are briefly described. Then, the applications of graphene-based materials for photoelectrodes (transparent electrode, semiconductor layer, and dye sensitizer) in DSSCs are deeply discussed. Finally, an outlook for graphene materials in DSSCs is provided.
机译:具有称为石墨烯的单个原子层的石墨显示了能量转换和储存装置的巨大能力。由于提供高光电转换效率,染料敏化太阳能电池(DSSCs)引起了激烈的兴趣。 DSSCS由光电极(染料敏化的纳米晶半导体)构成,具有氧化还原耦合的电解质和逆电极。在本综述文章中,我们概述了提高效率的策略,并通过将石墨烯引入DSSCS作为光电极来降低成本。首先,简要描述DSSCS的发展和石墨烯的性质。然后,深受讨论DSSCS中光电极(透明电极,半导体层和染料敏化剂)的石墨烯基材料的应用。最后,提供了DSSCS中石墨烯材料的前景。

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