卤化物
材料科学
钙钛矿(结构)
异质结
扩散过程
扩散
化学物理
光电子学
无机化学
结晶学
化学
热力学
物理
创新扩散
计算机科学
知识管理
作者
Akriti Akriti,Shuchen Zhang,Zih‐Yu Lin,Enzheng Shi,Blake P. Finkenauer,Yao Gao,Alan J. Pistone,Ke Ma,Brett M. Savoie,Letian Dou
标识
DOI:10.1002/adma.202105183
摘要
Abstract Anionic diffusion strongly impacts the stability of halide perovskite materials, but it is still not well understood. Here, a quantitative investigation of in‐plane thermally driven anionic inter‐diffusion in a series of novel 2D and quasi‐2D halide perovskites lateral heterostructures is reported. The calculated diffusion coefficients ( D ) reveal the inhibition of Br–I inter‐diffusion with bulky π‐conjugated organic cations compared with short‐chain aliphatic organic cations. Furthermore, halide diffusion is found to be faster in quasi‐2D ( n > 1) than 2D perovskites ( n = 1). The increment becomes less apparent as the “ n ” number increases, akin to the quantum confinement effect observed for band gaps. These trends are rationalized by molecular dynamics simulations of free energy barriers for halide diffusion that reveal mechanisms for suppressing diffusion. This work provides important fundamental insights on the anionic migration and diffusion process in halide perovskite materials.
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