Hu Yanqing, Li Songqi, Yu Shijie, Chen Shuoran, Yan Yuyang, Liu Yan, Chen Yuanpeng, Chen Caosong, Shao Qiyue, Liu Yingshuai
School of Materials Science and Engineering, Suzhou University of Science and Technology, Suzhou 215009, China.
School of Materials Science and Engineering, Southeast University, Nanjing 211189, China.
Nanomaterials (Basel). 2022 Sep 9;12(18):3123. doi: 10.3390/nano12183123.
This work presents a highly secure anticounterfeiting strategy based on upconversion/afterglow hybrids with tricolor emissions tuned by a single 975 nm laser. The hybrids are composed of NaYF:Yb/Tm and NaYF:Yb/Er microrods and CaS:Eu afterglow phosphors. Under 975 nm excitation, the hybrids exhibit multicolor emissions from green to white by adjusting laser power and then emit red afterglow light when the 975 nm laser is off. Under synergistic excitation of the blue-green light emitted by Tm/Er microrods, the red afterglow emission not only has a strong initial intensity but also lasts for 3 s. Obvious trichromatic changes from green to white to red can be observed by the naked eye. A pattern printed by the hybrid ink exhibits tricolor emissions by laser adjustment and switch. This proves that upconversion/afterglow hybrids are an excellent candidate for anticounterfeiting applications with high-level security but a simple recognition method.
这项工作提出了一种基于上转换/余辉混合材料的高度安全防伪策略,该混合材料具有由单个975 nm激光调谐的三色发射。这些混合材料由NaYF:Yb/Tm和NaYF:Yb/Er微棒以及CaS:Eu余辉磷光体组成。在975 nm激发下,通过调节激光功率,混合材料呈现从绿色到白色的多色发射,然后在975 nm激光关闭时发出红色余辉光。在Tm/Er微棒发出的蓝绿光的协同激发下,红色余辉发射不仅具有很强的初始强度,而且持续3秒。肉眼可以观察到从绿色到白色再到红色的明显三色变化。由混合墨水印刷的图案通过激光调节和切换呈现三色发射。这证明上转换/余辉混合材料是具有高安全性但识别方法简单的防伪应用的极佳候选材料。