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Improving the Performance of PbS Quantum Dot Solar Cells by Optimizing ZnO Window Layer

机译:通过优化ZnO窗口层提高PbS量子点太阳能电池的性能

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摘要

Comparing with hot researches in absorber layer, window layer has attracted less attention in PbS quantum dot solar cells (QD SCs). Actually, the window layer plays a key role in exciton separation, charge drifting, and so on. Herein, ZnO window layer was systematically investigated for its roles in QD SCs performance. The physical mechanism of improved performance was also explored. It was found that the optimized ZnO films with appropriate thickness and doping concentration can balance the optical and electrical properties, and its energy band align well with the absorber layer for efficient charge extraction. Further characterizations demonstrated that the window layer optimization can help to reduce the surface defects, improve the heterojunction quality, as well as extend the depletion width. Compared with the control devices, the optimized devices have obtained an efficiency of 6.7% with an enhanced V oc of 18%, J sc of 21%, FF of 10%, and power conversion efficiency of 58%. The present work suggests a useful strategy to improve the device performance by optimizing the window layer besides the absorber layer. Electronic supplementary materialThe online version of this article (doi:10.1007/s40820-016-0124-2) contains supplementary material, which is available to authorized users.
机译:与吸收层方面的热门研究相比,窗口层在PbS量子点太阳能电池(QD SC)中的关注较少。实际上,窗口层在激子分离,电荷漂移等方面起着关键作用。本文中,系统地研究了ZnO窗口层在QD SCs性能中的作用。还探讨了提高性能的物理机制。发现具有适当厚度和掺杂浓度的优化的ZnO薄膜可以平衡光学和电学性质,并且其能带与吸收层良好地对准以有效地提取电荷。进一步的特征表明,窗口层的优化可以帮助减少表面缺陷,改善异质结质量以及延长耗尽层宽度。与控制设备相比,优化后的设备获得了6.7%的效率,而V oc为18%,J sc为21%,FF为10%,功率转换效率为58%。本工作提出了一种通过优化除吸收层之外的窗口层来改善器件性能的有用策略。电子补充材料本文的在线版本(doi:10.1007 / s40820-016-0124-2)包含补充材料,授权用户可以使用。

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