作者
Chenwang Fu, Jianing Ding, Jiangnan Yan, Wulin Du, Yifan Gao, Kongyu Ge, Yanbin Li, Hongjun Ji, Mingyu Li, Dengfeng Peng, Ruobing Bai, Huanhuan Feng
期刊
ACS Applied Materials & Interfaces
出版商
American Chemical Society
简介
The growing demand for anticounterfeiting of high-value goods calls for advanced technologies that integrate multiple security features. Here, we demonstrate a triple-information encryption system based on fluorescent microspheres. Monodisperse polystyrene fluorescent microspheres doped with the rare-earth complex Eu(TTA)3(TOPO)2 were synthesized via emulsion polymerization, achieving tunable diameters (132–288 nm) and intense red emission at 612 nm. By optimizing the rheological properties of the colloidal ink and precisely controlling the electrohydrodynamic printing process, high-quality full-color structural color patterns were fabricated. Crucially, by exploiting the Purcell effect of the photonic crystal, we engineered a spatially graded fluorescence enhancement across the patterns, thereby establishing the triple-encryption mechanism. The resulting patterns exhibit angle-dependent structural colors …