Quan Xueping, Yan Bing
Shanghai Key Lab of Chemical Assessment and Sustainability, School of Chemical Science and Engineering, Tongji University, Siping Road 1239, Shanghai 200092, China.
ACS Appl Mater Interfaces. 2023 Nov 29;15(47):54634-54642. doi: 10.1021/acsami.3c11298. Epub 2023 Nov 16.
Metal-organic framework (MOF) and covalent-organic framework (COF) hybrid materials can combine the unique properties of MOF and COF components, and their applications in fluorescence sensing have attracted more and more attention. Herein, ZIF-90 is grown on 3D-COF by a simple in situ growing method in which the 7-amino-4-methylcoumarin (AMC) is encapsulated in ZIF-90 to construct a fluorescent sensor. Chloroquine phosphate (CQP) can coordinate with Zn to decompose the ZIF-90 and release AMC. At 365 nm excitation, the ratiometric fluorescence signal AMC/3D-COF (/) increases linearly with CQP in a linear range of 4 × 10 to 4 × 10 M in urine. Under 340 nm excitation, quantitative analysis of CQP in the serum (3 × 10 to 4 × 10 M) is based on the fluorescence intensity of Zn-CQP/3D-COF (/). In addition, AMC@ZIF-90/3D-COF () exhibits high anti-interference and selectivity in sensing of FA with a "turn off" mode, with a correlation range of 1 × 10 to 1 × 10 M. The fluorescence color changes triggered by CQP under different excitation conditions, and the different fluorescence responses caused by CQP make it a highly secure anticounterfeiting platform. The synthesized dye@MOF/COF hybrids not only provide a new way to integrate multiple emission to design fluorescent probes for differentiation detection but also offer ideas for the design of anticounterfeiting platforms.
金属有机框架(MOF)与共价有机框架(COF)杂化材料能够结合MOF和COF组分的独特性能,其在荧光传感方面的应用已引起越来越多的关注。在此,通过一种简单的原位生长方法在3D-COF上生长ZIF-90,其中将7-氨基-4-甲基香豆素(AMC)封装在ZIF-90中以构建荧光传感器。磷酸氯喹(CQP)可与锌配位以分解ZIF-90并释放AMC。在365 nm激发下,尿液中4×10至4×10 M线性范围内,比率荧光信号AMC/3D-COF(/)随CQP呈线性增加。在340 nm激发下,基于Zn-CQP/3D-COF(/)的荧光强度对血清中3×10至4×10 M的CQP进行定量分析。此外,AMC@ZIF-90/3D-COF()在以“关闭”模式传感叶酸时表现出高抗干扰性和选择性,相关范围为1×10至1×10 M。不同激发条件下CQP触发的荧光颜色变化以及CQP引起的不同荧光响应使其成为高度安全的防伪平台。合成的染料@MOF/COF杂化材料不仅为整合多种发射以设计用于差异检测的荧光探针提供了新途径,也为防伪平台的设计提供了思路。