Hongli Yu, Yibo Cui, Ruibin Hao, Dong Zhao, Linyu Chi, Kunjie Liu, Jiawei Lin, Zhongnan Guo, Jing Zhao, Quanlin Liu
ABSTRACT 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 ‐C 12 H 18 N 2 )ZnCl 2 and ( R / S ‐C 12 H 20 N 2 )ZnCl 4 ·H 2 O ( R / S ‐C 12 H 20 N 2 is ( R )‐3‐Amino‐1‐benzylpiperidine and ( S )‐1‐Benzyl‐3‐aminopiperidine). Specifically, ( R / S ‐C 12 H 20 N 2 )ZnCl 4 ·H 2 O exhibits a broad excitation window and dual afterglow emissions at 455 and 505 nm, while ( R / S ‐C 12 H 18 N 2 )ZnCl 2 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.