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首页> 外文期刊>Nanoscale >A CdSe thin film: a versatile buffer layer for improving the performance of TiO2 nanorod array: PbS quantum dot solar cells
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A CdSe thin film: a versatile buffer layer for improving the performance of TiO2 nanorod array: PbS quantum dot solar cells

机译:CdSe薄膜:通用缓冲层提高二氧化钛奈米棒阵列的性能:PbS量子点太阳能电池

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摘要

To fully utilize the multiple exciton generation effects in quantum dots and improve the overall efficiency of the corresponding photovoltaic devices, nanostructuralizing the electron conducting layer turns out to be a feasible strategy. Herein, PbS quantum dot solar cells were fabricated on the basis of morphologically optimized TiO2 nanorod arrays. By inserting a thin layer of CdSe quantum dots into the interface of TiO2 and PbS, a dramatic enhancement in the power conversion efficiency from 4.2% to 5.2% was realized and the resulting efficiency is one of the highest values for quantum dot solar cells based on nanostructuralized buffer layers. The constructed double heterojunction with a cascade type-II energy level alignment is beneficial for promoting photogenerated charge separation and reducing charge recombination, thereby responsible for the performance improvement, as revealed by steady-state analyses as well as ultra-fast photoluminescence and photovoltage decays. Thus this paper provides a good buffer layer to the community of quantum dot solar cells.
机译:要充分利用多个激子的一代在量子点和提高整体的影响相应的光电效率设备,nanostructuralizing电子导电层是可行的策略。组合形态的基础上吗优化二氧化钛奈米棒阵列。层薄薄的CdSe量子点到接口的二氧化钛和PbS,大幅提高电源转换效率从4.2%意识到和由此产生的效率是5.2%量子点太阳能值最高的国家之一基于nanostructuralized缓冲层的细胞。构建双异质结的级联二型能量水平对齐有利于促进photogenerated电荷分离,减少电荷复合,从而负责性能改进,依据稳态分析以及超高速光致发光光电压衰减。好缓冲层量子点的社区太阳能电池。

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