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首页> 外文期刊>Nanoscale Research Letters >Gradient Engineered Light Absorption Layer for Enhanced Carrier Separation Efficiency in Perovskite Solar Cells
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Gradient Engineered Light Absorption Layer for Enhanced Carrier Separation Efficiency in Perovskite Solar Cells

机译:梯度工程光吸收层,用于增强钙钛矿太阳能电池的载波分离效率

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Carrier transport behavior in the perovskite light absorption layer significantly impacts the performance of perovskite solar cells (PSCs). In this work, reduced carrier recombination losses were achieved by the design of a band structure in perovskite materials. An ultrathin (PbI_(2)/PbBr_(2))_(n)film with a gradient thickness ratio was deposited as the lead halide precursor layer by a thermal evaporation method, and PSCs with a gradient band structure in the perovskite absorption layer were fabricated by a two-step method in ambient atmosphere. For comparison, PSCs with homogeneous perovskite materials of MAPbI_(3)and MAPbI_( x )Br_(3 ? x )were fabricated as well. It is found that the gradient type-II band structure greatly reduces the carrier lifetime and enhances the carrier separation efficiency. As a result, the PSCs with a gradient band structure exhibit an average power conversion efficiency of 17.5%, which is 1–2% higher than that of traditional PSCs. This work provides a novel method for developing high-efficiency PSCs.
机译:钙钛矿光吸收层中的载体传输行为显着影响钙钛矿太阳能电池(PSC)的性能。在这项工作中,通过在钙钛矿材料中设计带结构来实现降低的载体复合损失。通过热蒸发方法沉积具有梯度厚度比的超薄(PBI_(2)/ PBBR_(2))_(n)膜作为铅卤化物前体层,并且PSCS具有钙钛矿吸收层中的梯度带结构通过两步法在环境气氛中制造。为了进行比较,还制造了MAPBI_(3)和MAPBI_(x)BR_(3≤x)的均匀钙钛矿材料的PSC。发现梯度类型-II带结构大大减少了载流子寿命并增强了载流子分离效率。结果,具有梯度频带结构的PSC具有17.5%的平均功率转换效率,其比传统PSC高出1-2%。这项工作提供了一种开发高效PSC的新方法。

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