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金属有机框架-发光客体(MOF@LG)复合材料的合成及其在环境健康传感中的应用:一篇综述。

Synthesis of metal-organic framework-luminescent guest (MOF@LG) composites and their applications in environmental health sensing: A mini review.

作者信息

Lv Wenbo, Song Yafang, Mo Zunli

机构信息

Research Center of Gansu Military and Civilian Integration Advanced Structural Materials, Lanzhou, 730070, PR China; Key Laboratory of Eco-Environment-Related Polymer Materials, Ministry of Education of China, Lanzhou, 730070, PR China; Key Laboratory of Polymer Materials of Gansu Province, College of Chemistry and Chemical Engineering, Northwest Normal University, Lanzhou, 730070, PR China.

Research Center of Gansu Military and Civilian Integration Advanced Structural Materials, Lanzhou, 730070, PR China; Key Laboratory of Eco-Environment-Related Polymer Materials, Ministry of Education of China, Lanzhou, 730070, PR China; Key Laboratory of Polymer Materials of Gansu Province, College of Chemistry and Chemical Engineering, Northwest Normal University, Lanzhou, 730070, PR China.

出版信息

Talanta. 2025 Feb 1;283:127105. doi: 10.1016/j.talanta.2024.127105. Epub 2024 Oct 24.

Abstract

Metal-organic framework (MOF) materials are three-dimensional structures formed by the combination of metal ions and organic ligands. So far, various typical metal organic framework materials have emerged, such as ZIF-8, MOF-5, UIO-66, etc. These traditional MOF materials have the advantages of simple synthesis, high porosity, and high stability, and have great research potential in the field of fluorescence sensing. However, MOF materials with excellent luminescent properties often involve fine regulation of organic ligands to ensure that fluorescence emission can be achieved between metal ions and organic ligands through energy transfer and photo induced electron transfer. The long synthesis cycle and cumbersome preparation process pose challenges for the research of fluorescent MOF materials. Combining MOF materials with luminescent guests is an effective way to prepare simple fluorescent chemical sensors. These luminescent guests include quantum dots, organic dyes, fluorescent nanoparticles, etc. They have the characteristic of high luminescence quantum yield, but high concentrations often lead to aggregation and collision, which in turn cause emission quenching. MOF materials with excellent porosity and specific surface area can serve as an ideal platform for encapsulating luminescent guests and preventing their aggregation. The preparation of MOF@luminescent guest composite material (MOF@LG) is easy to synthesize, which not only effectively improves the poor fluorescence performance of MOFs themselves, but also preserves the excellent fluorescence performance of luminescent guests. Composite materials often have excellent solid-state luminescence performance, making them a good choice for constructing a simple fluorescence sensing platform.

摘要

金属有机框架(MOF)材料是由金属离子和有机配体结合形成的三维结构。到目前为止,已经出现了各种典型的金属有机框架材料,如ZIF-8、MOF-5、UIO-66等。这些传统的MOF材料具有合成简单、孔隙率高和稳定性高的优点,在荧光传感领域具有很大的研究潜力。然而,具有优异发光性能的MOF材料通常涉及有机配体的精细调控,以确保通过能量转移和光致电子转移在金属离子和有机配体之间实现荧光发射。较长的合成周期和繁琐的制备过程给荧光MOF材料的研究带来了挑战。将MOF材料与发光客体相结合是制备简单荧光化学传感器的有效方法。这些发光客体包括量子点、有机染料、荧光纳米颗粒等。它们具有高发光量子产率的特点,但高浓度往往会导致聚集和碰撞,进而导致发射猝灭。具有优异孔隙率和比表面积的MOF材料可以作为封装发光客体并防止其聚集的理想平台。MOF@发光客体复合材料(MOF@LG)的制备易于合成,这不仅有效地改善了MOF自身较差的荧光性能,还保留了发光客体优异的荧光性能。复合材料通常具有优异的固态发光性能,使其成为构建简单荧光传感平台的良好选择。

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