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封装在红色发光铕基金属有机框架中的蓝色发光氮、硫共掺杂碳点,用于制备可逆防伪墨水的双发射复合材料。

Blue luminescent N,S-doped carbon dots encapsulated in red emissive Eu-MOF to form dually emissive composite for reversible anti-counterfeit ink.

作者信息

Gao Jin-Ping, Yao Ru-Xin, Chen Xiao-Hui, Li Hui-Hui, Zhang Chao, Zhang Fu-Qiang, Zhang Xian-Ming

机构信息

Key Laboratory of Magnetic Molecules and Magnetic Information Materials, Ministry of Education, School of Chemistry & Material Science, Shanxi Normal University, Linfen 041004, P. R. China.

出版信息

Dalton Trans. 2021 Feb 7;50(5):1690-1696. doi: 10.1039/d0dt03048a. Epub 2021 Jan 14.

Abstract

Lanthanide metal-organic frameworks (Ln-MOFs) have demonstrated great potential in luminescence sensing and optical anti-counterfeiting. High-security anti-counterfeiting technology is of great importance and requires the development of universal luminescent materials with multiple modes of emission and adjustable photoluminescence. Herein, a 3D red light emission microporous europium(iii) metal-organic framework [Eu(OH)(1,3-db)(HO)]·3HO (1) (1,3-db = 1,3-di(3',5'-dicarboxylpheny) benzene) was constructed from a zigzag [Eu(COO)] chain and π-electron-rich terphenyl-tetracarboxylate. Notably, the quenched fluorescence of 1 under hydrogen chloride vapor could be recovered upon fuming by a vapor of EtN. Most strikingly, the strong blue light emission by nitrogen and sulfur co-doped carbon dots (N,S-CDs) could be encapsulated in 1 to generate a dual-emission composite, namely, N,S-CDs@Eu-MOF, which shows solvent-dependent photoluminescence: N,S-CD-related blue luminescence in water and Eu-MOF-related red emission in organic solvents. Taking advantage of the above unique reversible fluorescent behavior, Eu-MOF and N,S-CDs@Eu-MOF are prepared as fluorescent high-security inks to achieve data encryption and decryption on specific flower patterns.

摘要

镧系金属有机框架材料(Ln-MOFs)在发光传感和光学防伪方面展现出了巨大潜力。高安全性防伪技术至关重要,需要开发具有多种发射模式和可调光致发光的通用发光材料。在此,通过之字形[Eu(COO)]链和富含π电子的三联苯四羧酸酯构建了一种三维红光发射微孔铕(iii)金属有机框架[Eu(OH)(1,3-db)(HO)]·3HO(1)(1,3-db = 1,3-二(3',5'-二羧基苯基)苯)。值得注意的是,1在氯化氢蒸气下猝灭的荧光在用乙胺蒸气熏蒸后可以恢复。最引人注目的是,氮和硫共掺杂碳点(N,S-CDs)的强蓝光发射可以封装在1中以生成双发射复合材料,即N,S-CDs@Eu-MOF,其表现出溶剂依赖性光致发光:在水中为与N,S-CD相关的蓝光发射,在有机溶剂中为与Eu-MOF相关的红光发射。利用上述独特的可逆荧光行为,将Eu-MOF和N,S-CDs@Eu-MOF制备为荧光高安全性油墨,以在特定花卉图案上实现数据加密和解密。

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