卤化物
光致发光
材料科学
发光
金属卤化物
金属
加密
维数之咒
电荷(物理)
载流子
光电子学
光化学
纳米技术
无机化学
结晶学
化学物理
半导体
激光器
网络拓扑
转化(遗传学)
物理化学
化学工程
晶体结构
八面体
激发态
作者
Hua‐Li Liu,Shuo‐Shi Li,Chun‐Rui Gao,Lin‐Yuan Xiong,Hui‐Lin Mo,Kai‐Ming Zhang,Shuang‐Quan Zang
标识
DOI:10.1002/adfm.202530677
摘要
ABSTRACT Hybrid organic‐inorganic metal halides with stimuli‐responsive photoluminescent activity hold significant promise for applications in security encoding, encrypted transmission, information storage, and beyond. However, effectively manipulating these stimuli‐responsive characteristics requires one to shed light on the composition‐structure‐property interconnections. Herein, we devised and synthesized two novel Cu(I)‐based organic‐inorganic metal halides with distinct structural topologies and dimensionality‐dependent photoluminescence, namely, a 1D and a 0D arrangement, but composed of identical organic ligands and inorganic building blocks: (C 12 H 14 N 2 ) 4 [(CuI 2 )] 4 [(Cu 4 I 8 )] and (C 12 H 14 N 2 ) 4 (H 2 PO 2 ) 6 Cu 4 I 6 . Through a combination of experimental investigations and theoretical calculations, we explored the influence of H 3 PO 2 ‐mediated structural dimensionality on inter‐convertible structural transformations, luminescent properties, and spatial charge distributions in these compounds. Additionally, we achieved decagram‐scale synthesis of the nano‐structured 0D topology, highlighting its potential for its large‐scale production in anti‐counterfeiting and encryption applications.
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