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刺激响应型荧光转换金属有机框架材料:应用与展望。

Stimuli -triggered fluoro-switching in metal-organic frameworks: applications and outlook.

机构信息

Academy of Scientific and Innovative Research (AcSIR), Ghaziabad - 201002, India.

出版信息

Dalton Trans. 2021 Mar 28;50(12):4067-4090. doi: 10.1039/d1dt00202c. Epub 2021 Mar 10.

DOI:10.1039/d1dt00202c
PMID:33690775
Abstract

The design and synthesis of efficient sensor materials with fast-responsive and ultrasensitive detection ability is critical to monitor ecological safety, supervise human health, control industrial wastes, and govern food quality among others. Metal-organic frameworks (MOFs) or coordination polymers (CPs) are a new class of porous crystalline materials that have emerged in several potential applications in last two decades. In particular, applications of MOFs as sensory scaffolds for the detection of hazardous pollutants have attracted researchers due to their fabulous structural characteristics and wide range of pore environment tunability. Among several transducer procedures, the luminescence detection of a particular analyte is immensely desirable as it is easy to handle and cost effective, where visual changes in physicochemical attributes can be comprehended via a quick naked eye detection. The porous nature of MOFs facilitates the pre-concentration of target analytes within the pore structure and provides superior host-guest interaction with good detection limits when compared to conventional materials. To this end, guest-induced fluorescence switching in sensory MOFs with good recyclability and unique detectable fingerprints are of particular importance to benefit futuristic monitoring aptitudes and promises environmental remediation. In this review, we present the latest literature based on the analyte-responsive modulation of fluorescence intensity in MOFs towards the detection of target pollutants and discuss the underlying sensing mechanism, which can assist in developing new useful nano-scale devices and sensors.

摘要

设计和合成具有快速响应和超灵敏检测能力的高效传感器材料对于监测生态安全、监督人类健康、控制工业废物以及管理食品质量等至关重要。金属-有机框架(MOFs)或配位聚合物(CPs)是一类新型多孔晶体材料,在过去二十年中已经在多个潜在应用中崭露头角。特别是,MOFs 作为用于检测危险污染物的传感支架的应用引起了研究人员的关注,因为它们具有出色的结构特征和广泛的孔环境可调性。在几种换能器程序中,特定分析物的荧光检测非常理想,因为它易于处理且具有成本效益,通过快速肉眼检测可以理解物理化学性质的变化。MOFs 的多孔性质有利于在孔结构内预浓缩目标分析物,并提供与传统材料相比具有更好的客体-主体相互作用和良好检测限的检测。为此,具有良好可回收性和独特可检测指纹的传感 MOFs 中的客体诱导荧光开关对于未来的监测能力和环境修复具有特别重要的意义。在这篇综述中,我们根据 MOFs 中荧光强度对分析物响应的调制,展示了最新的文献,以用于检测目标污染物,并讨论了潜在的传感机制,这有助于开发新的有用的纳米级设备和传感器。

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