热致变色
材料科学
发光
八面体
卤化物
热的
光电子学
四面体
锰
加密
光致发光
智能材料
纳米技术
光化学
半导体
配位复合体
混合材料
激发
发光二极管
化学物理
作者
Yibo Cui,Jiawei Lin,Kun-jie Liu,Yuhe Shao,Ruibin Hao,Ruonan Yao,Zhongnan Guo,Jing Zhao,Quan-Lin Liu
标识
DOI:10.1002/adom.202502522
摘要
Abstract With the growing demand for smart sensing and information encryption technologies, stimuli‐responsive luminescent materials are emerging as key candidates for temperature monitoring and security applications. This study presents a Mn 2+ ‐based hybrid halide, (MAMP)MnBr 3 ·Br [MAMP = 2‐[(methylamino)methyl]pyridine], exhibiting reversible thermochromic luminescence, ideal for smart thermal sensing. The material undergoes a red‐to‐green emission shift triggered by a heat‐induced coordination transformation, transitioning from octahedral [MnBr 6 ] 4− to tetrahedral [MnBr 4 ] 2− units. Upon heating to 455 K, the Mn‐Br bonds are broken, leading to a structural transformation from octahedral [MnBr 6 ] 4− to tetrahedral [MnBr 4 ] 2− . This coordination change causes a red‐to‐green luminescence shift (651–515 nm). The material delivers strong red emission at 651 nm with an internal quantum efficiency of 21.6%, exhibits high thermal stability, and demonstrates efficient X‐ray scintillation. These properties make it suitable for non‐contact temperature sensing and dynamic information encryption. The material's excellent performance opens new opportunities for applications in temperature history tracking, anti‐counterfeiting, and flexible optoelectronic devices.
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