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首页> 外文期刊>Nanoscale >Spray deposition of water-soluble multiwall carbon nanotube and Cu2ZnSnSe4 nanoparticle composites as highly efficient counter electrodes in a quantum dot-sensitized solar cell system
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Spray deposition of water-soluble multiwall carbon nanotube and Cu2ZnSnSe4 nanoparticle composites as highly efficient counter electrodes in a quantum dot-sensitized solar cell system

机译:水溶性碳多层喷射沉积纳米管和Cu2ZnSnSe4纳米复合材料为电极在一个高效的计数器量子dot-sensitized太阳能电池系统

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In this paper, low-cost counter electrodes (CEs) based on water-soluble multiwall carbon nanotube (MWCNT) and Cu2ZnSnSe4 nanoparticle (CZTSe NP) composites have been successfully introduced into a quantum dot-sensitized solar cell (QDSC) system. Suitable surface modification allows the MWCNTs and CZTSe NPs to be homogeneously dispersed in water, facilitating the subsequent low-temperature spray deposition of high quality composite films with different composite ratios. The electrochemical catalytic activity of the composite CEs has been critically compared by electrochemical impedance spectroscopy and Tafel-polarization analysis. It is found that the composite CE at the MWCNT: CZTSe ratio of 0.1 offers the best performance, leading to an optimal solar cell efficiency of 4.60%, which is 50.8% higher than that of the Pt reference CE. The as-demonstrated higher catalytic activity of the composite CEs compared to their single components could be ascribed to the combination of the fast electron transport of the MWCNTs and the high catalytic activity of CZTSe NPs.
机译:在这篇文章中,低成本的反电极(CEs)基于水溶性多层碳纳米管复合材料已成功引入一个量子dot-sensitized太阳能电池(QDSC)系统。热合和CZTSe NPs是均匀的分散在水中,促进后续低温喷雾沉积高质量的复合薄膜具有不同复合比例。的电化学催化活性复合CEs极度相比了电化学阻抗谱和Tafel-polarization分析。复合CE MWCNT: CZTSe比率为0.1提供了最好的性能,导致最优的太阳能电池的效率4.60%,高出50.8%的Pt参考CE。提出来更高的催化活性复合CEs相比,单身组件可以归因于组合碳管的电子传递和快速CZTSe NPs的高催化活性。

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