余辉
卤化物
锌
磷光
材料科学
化学
光化学
光电子学
激发
配位复合体
对偶(语法数字)
纳米技术
锌化合物
化学物理
二极管
发射光谱
作者
Hongli Yu,Yibo Cui,Ruibin Hao,Dong Zhao,Linyu Chi,Kunjie Liu,Jiawei Lin,Zhongnan Guo,Jing Zhao,Quanlin Liu
出处
期刊:Small
[Wiley]
日期:2026-03-03
卷期号:: e14097-e14097
标识
DOI:10.1002/smll.202514097
摘要
Zero-dimensional (0D) hybrid halide materials are promising candidates for room-temperature phosphorescence (RTP) and hold significant potential for anti-counterfeiting applications. However, conventional anti-counterfeiting methods relying solely on spatial patterns are insufficient to meet rising demands for multidimensional security. Here, we report an excitation-responsive spatiotemporal triple-resolution anti-counterfeiting system based on heterocoordinated zinc-based halides, (R/S-C12H18N2)ZnCl2 and (R/S-C12H20N2)ZnCl4·H2O (R/S-C12H20N2 is (R)-3-Amino-1-benzylpiperidine and (S)-1-Benzyl-3-aminopiperidine). Specifically, (R/S-C12H20N2)ZnCl4·H2O exhibits a broad excitation window and dual afterglow emissions at 455 and 505 nm, while (R/S-C12H18N2)ZnCl2 displays blue afterglow at 460 nm. Coordination bond engineering enables tunable excitation-dependent phosphorescence, offering a powerful strategy for advanced time-gated and multilevel anti-counterfeiting applications.
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