Fluorescent Probes Based on Metal and Aggregation-induced Luminescent Organic Molecule Complexes for Bioimaging and Sensing Applications

Ke Liu
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Abstract

Metal-Organic Coordination polymer (MOCPs) is an emerging class of inorganic-organic porous hybrid materials with infinite coordination polymers (CPs) or metal-organic backbones (MOFs) formed by the interaction between metal ions and organic ligands and ligand functional groups. The molecular structure of the organic ligands composing MOCPs is rich in variation, while inorganic metal ions generally have good photoelectromagnetic properties. Therefore, MOCPs have diverse structural variations, adjustable pore size, high stability and controllable synthesis, and have received wide attention in gas storage, multiphase catalysis, chemical sensing and biological applications. Fluorescence properties are one of the most widely used techniques for bioimaging and sensing detection. However, conventional luminescent groups are usually affected by aggregation-induced quenching (ACQ) effects. Aggregation-induced luminescence molecules (AIEs) based on metal-organic coordination polymers combine the advantages of organic AIEs and transition metal centers to improve photophysical properties and therapeutic effects.
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基于金属和聚集诱导发光有机分子配合物的荧光探针在生物成像和传感中的应用
金属-有机配位聚合物(mops)是一类新兴的无机-有机多孔杂化材料,由金属离子与有机配体和配体官能团相互作用形成无限配位聚合物(CPs)或金属-有机骨架(MOFs)。组成MOCPs的有机配体分子结构变化丰富,而无机金属离子一般具有良好的光电磁性能。因此,MOCPs具有结构变化多样、孔径可调、稳定性高、合成可控等特点,在储气、多相催化、化学传感和生物等方面的应用受到广泛关注。荧光特性是生物成像和传感检测中应用最广泛的技术之一。然而,传统的发光基团通常受到聚集诱导猝灭(ACQ)效应的影响。基于金属-有机配位聚合物的聚集致发光分子(AIEs)结合了有机AIEs和过渡金属中心的优点,改善了光物理性质和治疗效果。
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