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首页> 外文期刊>RSC Advances >Additive effects of alkali metals on Cu-modified CH3NH3PbI3-delta Cl delta photovoltaic devices
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Additive effects of alkali metals on Cu-modified CH3NH3PbI3-delta Cl delta photovoltaic devices

机译:碱金属对Cu - 改性CH3NH3PBβ-Delta Clta光伏器件的添加剂效应

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We investigated the addition of alkali metal elements (namely Na+, K+, Rb+, and Cs+) to Cu-modified CH3NH3PbI3-delta Cl delta photovoltaic devices and their effects on the photovoltaic properties and electronic structure. The open-circuit voltage was increased by CuBr2 addition to the CH3NH3PbI3-delta Cl delta precursor solution. The series resistance was decreased by simultaneous addition of CuBr2 and RbI, which increased the external quantum efficiencies in the range of 300-500 nm, and the short-circuit current density. The energy gap of the perovskite crystal increased through CuBr2 addition, which we also confirmed by first-principles calculations. Charge carrier generation was observed in the range of 300-500 nm as an increase of the external quantum efficiency, owing to the partial density of states contributed by alkali metal elements. Calculations suggested that the Gibbs energies were decreased by incorporation of alkali metal elements into the perovskite crystals. The conversion efficiency was maintained for 7 weeks for devices with added CuBr2 and RbI.
机译:我们研究了将碱金属元素(即Na +,K,RB +和Cs +)加入Cu-Demified CH3NH3PBi3-Delta光伏器件及其对光伏性能和电子结构的影响。通过CH3NH3PBI3-DELTA CL DELTA前体溶液的CUBR2增加了开路电压。通过同时加入CubR2和RBI同时增加串联电阻,这增加了300-500nm范围内的外部量子效率,以及短路电流密度。钙钛矿晶体的能隙通过Cub曲2加入,我们也通过第一原理计算来证实。由于碱金属元素贡献的状态的部分密度,在300-500nm的范围内观察到电荷载流子生成。计算表明,通过将碱金属元素掺入钙钛矿晶体中,降低了吉布斯能量。对于添加的CubR2和RBI的装置,将转化效率保持7周。

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    《RSC Advances 》 |2019年第42期| 共10页
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  • 正文语种 eng
  • 中图分类 化学 ;
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