...
首页> 外文期刊>Nanoscale >Lead-free double perovskites Cs2InCuCl6 and (CH3NH3)(2)InCuCl6: electronic, optical, and electrical properties
【24h】

Lead-free double perovskites Cs2InCuCl6 and (CH3NH3)(2)InCuCl6: electronic, optical, and electrical properties

机译:无铅双钙钛矿Cs2InCuCl6和(CH3NH3) (2) InCuCl6:电子,光学,电气性能

获取原文
获取原文并翻译 | 示例

摘要

Searching for alternatives to lead-containing metal halide perovskites, we explored the properties of indium-based inorganic double perovskites Cs2InMX6 with M = Cu, Ag, Au and X = Cl, Br, I, and of its organic-inorganic hybrid derivative MA(2)InCuCl(6) (MA = CH3NH3+) using computation within Kohn-Sham density functional theory. Among these compounds, Cs2InCuCl6 and MA(2)InCuCl(6) were found to be potentially promising candidates for solar cells. Calculations with different functionals provided the direct band gap of Cs2InCuCl6 between 1.05 and 1.73 eV. In contrast, MA(2)InCuCl(6) exhibits an indirect band gap between 1.31 and 2.09 eV depending on the choice of exchange-correlation functional. Cs2InCuCl6 exhibits a much higher absorption coefficient than that calculated for c-Si and CdTe, common semiconductors for solar cells. Even MA(2)InCuCl(6) is predicted to have a higher absorption coefficient than c-Si and CdTe across the visible spectrum despite the fact that it is an indirect band gap material. The intrinsic charge carrier mobilities for Cs2InCuCl6 along the L-Gamma path are predicted to be comparable to those for MAPbI(3). Finally, we carried out calculations of the band edge positions for MA(2)InCuCl(6) and Cs2InCuCl6 to offer guidance for solar cell heterojunction design and optimization. We conclude that Cs2InCuCl6 and MA(2)InCuCl(6) are promising semiconductors for photovoltaic and optoelectronic applications.
机译:寻找替代含铅金属卤化物钙钛矿,我们探讨了indium-based无机双属性perovskites Cs2InMX6 M = Cu Au、Ag和X =氯、溴、我和有机-无机杂化马导数(2)InCuCl(6)(马= CH3NH3 +)使用在Kohn-Sham密度泛函计算理论。马(2)InCuCl(6)被认为是潜在的有前途的候选人为太阳能电池。计算不同的泛函,提供之间的直接带隙Cs2InCuCl6 1.05和1.73 eV。间接带隙之间的1.31和2.09 eV根据exchange-correlation的选择功能。吸收系数比计算同单晶硅和集团,常见的半导体太阳能细胞。吸收系数高于同单晶硅和集团在整个可见光谱,尽管这一事实它是一种间接带隙材料。内在的电荷载体的机动性预计Cs2InCuCl6沿着L-Gamma路径为MAPbI同(3)。我们乐队的边缘进行计算马的位置(2)InCuCl(6)和Cs2InCuCl6为太阳能电池异质结提供指导设计和优化。马Cs2InCuCl6和(2)InCuCl(6)是有前途的半导体光电和光电应用程序。

著录项

获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号