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CdS/CdSe quantum dots and ZnPc dye co-sensitized solar cells with Au nanoparticles/graphene oxide as efficient modified layer

机译:CdS / CdSe量子点和ZnPc染料共敏化太阳能电池,以Au纳米颗粒/氧化石墨烯为有效修饰层

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摘要

Co-sensitization by using two or more sensitizers with complementary absorption spectra to expand the spectral response range is an effective approach to enhance device performance of quantum dot sensitized solar cells (QDSSCs). To improve the light-harvesting in the visibleear-infrared (NIR) region, organic dye zinc phthalocyanine (ZnPc) was combined with CdS/CdSe quantum dots (QDs) for co-sensitized solar cells based on ZnO inverse opals (IOs) as photoanode. The resulting co-sensitized device shows an efficient panchromatic spectral response feature to similar to 750 nm and presents an overall conversion efficiency of 4.01%, which is superior to that of the individual ZnPc-sensitized solar cells and CdS/CdSe-sensitized solar cells. Meanwhile, an Au nanoparticles/graphene oxide (Au NPs/GO) composite layer was successfully prepared to modify Cu2S counter electrode for the co-sensitized solar cells. Reducing the carrier recombination process by GO and catalytic process of Au NPs leads to increased power conversion efficiency(PCE) from 4.01 to 4.60% and sustainable stability remains 85% of its original value after 60 min light exposure. In this paper, introduction of the organic dyes as co-sensitizer and Au NPs/GO as counter electrode modified layer has been proved to be an effective route to improve the performance of QDSSCs. (C) 2016 Elsevier Inc. All rights reserved.
机译:通过使用两个或多个具有互补吸收光谱的增感剂来扩大光谱响应范围的共增感是增强量子点增感太阳能电池(QDSSC)器件性能的有效方法。为了改善可见/近红外(NIR)区域的光收集,将有机染料酞菁锌(ZnPc)与CdS / CdSe量子点(QDs)结合使用,以基于ZnO反蛋白石(IOs)的共敏化太阳能电池作为光电阳极。所得的共增感器件显示出有效的全色光谱响应特征,类似于750 nm,总转换效率为4.01%,优于单独的ZnPc增感太阳能电池和CdS / CdSe增感太阳能电池。同时,成功制备了金纳米颗粒/氧化石墨烯(Au NPs / GO)复合层,以修饰用于共敏化太阳能电池的Cu2S对电极。通过GO减少载流子重组过程和Au NPs的催化过程可将功率转换效率(PCE)从4.01提高到4.60%,可持续的稳定性在暴露60分钟后仍保持其原始值的85%。在本文中,已证明引入有机染料作为增敏剂和Au NPs / GO作为对电极修饰层是改善QDSSCs性能的有效途径。 (C)2016 Elsevier Inc.保留所有权利。

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