光致发光
发光
锰
卤化物
材料科学
相变
八面体
过渡金属
量子产额
相(物质)
晶体结构
结晶学
Crystal(编程语言)
光电子学
化学物理
凝聚态物理
格子(音乐)
热的
铁磁性
配位复合体
单晶
光化学
量子相变
产量(工程)
金属
原子电子跃迁
无机化学
作者
Guojun Zhou,Xiaoting Zhang,Qiqiong Ren,Nan Zhang,Yancong Jiang,Huimin Chen,Shi‐Li Li,Xian‐Ming Zhang
摘要
ABSTRACT Stimuli‐responsive luminescent materials hold significant promise for anti‐counterfeiting applications; however, most existing systems are limited by poor color discriminability. Herein, we report an irreversible dehydration‐driven phase transition in C 4 H 12 N 2 MnBr 4 (H 2 O) 2 upon thermal treatment, transforming into C 4 H 12 N 2 MnBr 4 with remarkably enhanced photoluminescence (PL) characteristics. This structural transition converts the Mn 2+ coordination environment from octahedral to tetrahedral, accompanied by the transformation of the inorganic units from [MnBr 4 (H 2 O) 2 ] 2– to [MnBr 4 ] 2– . The phase transition triggers a striking luminescence switching from red‐light (650 nm) to green‐light (520 nm), originating from the d–d transition ( 4 T 1 → 6 A 1 ) of Mn 2+ ions. Notably, the phase transition affords a remarkable enhancement of photoluminescence quantum yield (PLQY) from 19.7% to 80%, along with a narrowing of emission bandwidth from 109 to 40 nm. These changes are attributed to the modulated crystal field strength, suppressed non‐radiative relaxation, and reduced electron‐phonon coupling. Leveraging this high‐contrast stimuli‐responsive behavior, we demonstrate its application in information encryption and anti‐counterfeiting. This work expands the family of thermal‐responsive manganese halides and offers a coordination engineering strategy for designing tunable emitters in low‐dimensional metal halides.
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