材料科学
辅助电极
电极
锑
量子点
薄膜
光电子学
硫化物
电解质
贵金属
能量转换效率
图层(电子)
纳米技术
化学工程
金属
冶金
化学
物理化学
工程类
作者
Ru Zhou,Xinnian Liu,Shiwang Zhang,Liangcheng Liu,Lei Wan,Hailing Guo,Xi Yang,Zhen Cheng,Liusen Hu,Haihong Niu,Xinyu Mao
标识
DOI:10.1016/j.mssp.2020.105613
摘要
The catalytic activity and charge transport characteristics of counter electrodes exert a significant impact on the photovoltaic performance of quantum dot-sensitized solar cells (QDSCs). Layered metal chalcogenides have received particular interest owning to their novel electronic properties. In this work, we report for the first time the use of layer-structured copper antimony sulfide (CuSbS2) for serving as the counter electrode materials for QDSCs. The CuSbS2 thin films were fabricated on conducting substrates through spray pyrolysis followed by a sulfuration process. The careful crystal phase and morphology characterizations reveal that as-obtained CuSbS2 thin films display long-range uniformity with flat film surfaces. A CuSbS2 counter electrode-based CdS/CdSe QDSC delivers a considerable power conversion efficiency of 2.15%. In contrast to the conventional noble Pt electrodes, spray-coated CuSbS2 counter electrodes exhibit higher catalytic activity for catalyzing polysulfide electrolyte regeneration. This work offers a promising counter electrode with superior catalytic capability for constructing highly efficient QDSCs.
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