钙钛矿(结构)
材料科学
带隙
密度泛函理论
吸附
卤化物
化学物理
分子
结构稳定性
纳米技术
计算化学
光电子学
物理化学
无机化学
结晶学
化学
有机化学
结构工程
工程类
作者
Maryam Babaei,Vahid Ahmadi,Samane Moghadam
标识
DOI:10.1002/adts.202401024
摘要
Abstract The development of halide double perovskites has received a lot of interest from many researchers due to solving the problem of poor stability and toxicity of lead‐based perovskites, which hinders the commercialization of perovskite solar cells. Therefore, in this work, the adsorption of water molecules, stability, optical, and electronic properties of double perovskites Cs 2 AgInX 6 (X = Br, Cl) are investigated using Density Functional Theory (DFT) calculations. Theoretical analysis shows that these double perovskites are thermodynamically stable. The diffusion coefficient of water in layers of Cs 2 AgInBr 6 and Cs 2 AgInCl 6 is much lower than that of MAPbI 3 according to means square displacement analysis, and also based on values of adsorption energy, the hydrophilicity of the proposed structure is lower than that of PbI 2 ‐terminated and MAI‐terminated surfaces. These materials demonstrate better ductility and mechanical stability than their corresponding 3D perovskites. For Cs 2 AgInBr 6 and Cs 2 AgInCl 6 , direct bandgap values are 1.49 and 3.14 eV, respectively, using hybrid Perdew‐Berke‐Ernzerhof + spin‐orbit‐coupling(PBE0+SOC) functional. Calculations of key solar cell parameters predict that Cs 2 AgInBr 6 may achieve efficiencies competitive with MAPbI 3 due to its high short‐circuit current, making it a promising stable, non‐toxic perovskite absorber material. This work provides fundamental insights that can guide further research on double perovskites for lead‐free, moisture‐resistant perovskite solar technologies.
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