Polymer bridging towards ion migration suppression in lateral 2D perovskite heterostructure

桥接(联网) 异质结 材料科学 钙钛矿(结构) 聚合物 离子 纳米技术 光电子学 复合材料 化学工程 化学 计算机科学 工程类 有机化学 计算机安全
作者
Xinyu Du,Lutao Li,Guoxiang Zhao,Daopeng Sheng,Juntong Zhu,Chen Wang,Yu Su,Yaqi Ye,Ruonan Wang,Jiating Li,Zhicheng Zhou,Sihan Zhang,Hengyu Cao,Yanhui Lou,Guifu Zou,Shan Cong
出处
期刊:Nano Research [Springer Science+Business Media]
卷期号:18 (6): 94907480-94907480
标识
DOI:10.26599/nr.2025.94907480
摘要

Two-dimensional (2D) halide perovskites have garnered significant interest owing to their facile solution processing, high quantum yield, and tunable photoelectronic properties. The formation of lateral heterostructures by 2D halide perovskites offers exceptional electronic and photoelectronic characteristics. However, the stability of 2D halide perovskite lateral heterostructures is compromised by the substantial intrinsic ion migration within the perovskite structure. Consequently, the suppression of ion diffusion at the interface is crucial to enable the growth of stable 2D halide perovskite heterostructures. In this study, we present an innovative polymer bridging strategy for the preparation of 2D halide perovskite lateral heterostructures with enhanced stability. We selected a linear polymer with cyano as the polymer bridge. The Polymers contain a significant number of binding sites that can effectively coordinate with the uncoordinated lead atoms at the in-plane edge of the 2D halide perovskite, thereby providing protection against perovskite decomposition. Additionally, the coordination of the polymer results in a heightened binding energy of Pb, leading to stronger halide ion binding and subsequent inhibition of halide ion migration. As a result, we demonstrate highly thermal stability of the heterostructure. Furthermore, the heterostructure exhibits the biexciton luminescence behaviors without the high energy excitation light. These findings present an effective approach for fabricating robust 2D halide perovskite lateral heterostructures. This research contributes to the advancement of the field by providing a new concept for fabricating stable 2D halide perovskite lateral heterostructures, and by offering significant insights into anionic behavior within such heterostructures.
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