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首页> 外文期刊>Journal of physical chemistry letters >Cesium Lead Halide Perovskites with Improved Stability for Tandem Solar Cells
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Cesium Lead Halide Perovskites with Improved Stability for Tandem Solar Cells

机译:串联太阳能电池具有增强稳定性的卤化铯铯钙钛矿

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摘要

A semiconductor that can be processed on a large scale with a bandgap around 1.8 eV could enable the manufacture of highly efficient low cost double-junction solar cells on crystalline Si. Solution-processable organicinorganic halide perovskites have recently generated considerable excitement as absorbers in single-junction solar cells, and though it is possible to tune the bandgap of (CH3NH3)Pb(BrxI1x)(3) between 2.3 and 1.6 eV by controlling the halide concentration, optical instability due to photoinduced phase segregation limits the voltage that can be extracted from compositions with appropriate bandgaps for tandem applications. Moreover, these materials have been shown to suffer from thermal degradation at temperatures within the processing and operational window. By replacing the volatile methylammonium cation with cesium, it is possible to synthesize a mixed halide absorber material with improved optical and thermal stability, a stabilized photoconversion efficiency of 6.5%, and a bandgap of 1.9 eV.
机译:可以在1.8 eV左右的带隙进行大规模加工的半导体可以在晶体Si上制造高效低成本的双结太阳能电池。溶液可加工的有机无机卤化物钙钛矿作为单结太阳能电池的吸收剂最近引起了极大的兴奋,尽管可以通过控制卤化物的浓度将(CH3NH3)Pb(BrxI1x)(3)的带隙调节在2.3和1.6 eV之间。 ,由于光诱导的相偏析而引起的光学不稳定性限制了可从具有合适带隙的组合物中提取的电压,以进行串联应用。而且,已经显示出这些材料在加工和操作窗口内的温度下遭受热降解。通过用铯代替挥发性甲基铵阳离子,可以合成具有改进的光学和热稳定性,稳定的光转换效率为6.5%,带隙为1.9 eV的混合卤化物吸收剂材料。

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