Core-Shell Structured Upconversion/Lead-Free Perovskite Nanoparticles for Anticounterfeiting Applications.
Hui XiaoBin LiuLei QiuGuogang LiGuodong ZhangDayu HuangYajie ZhaoChunzheng YangFan JiangPeipei DangHongzhou LianZiyong ChengJun LinPublished in: Angewandte Chemie (International ed. in English) (2021)
In view of their excellent luminescence properties, nanocrystalline metal halide perovskites have diverse optoelectronic applications, including those related to anticounterfeiting. However, high-quality optical anticounterfeiting typically requires multiple encryptions relying on several optical modes to ensure information security. Herein, an efficient anticounterfeiting strategy based on dual optical encryption is realized by combining up- and downconversion luminescence in a nanocomposite with NaYF 4 : Er 3+ ,Yb 3+ as core and a CsMnCl 3 as shell. The emission color of this nanocomposite depends on the penetration depth of incident radiation and can be changed by varying the excitation source (980 nm laser or UV light) to produce different luminescent patterns. This feature allows one to effectively improve the anticounterfeiting index and fabricate professional anticounterfeiting materials.
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