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简便构建一种蒽修饰的高发光配位聚合物用于选择性检测爆炸性硝基芳烃和致突变污染物三硝基苯酚。

Facile construction of an anthracene-decorated highly luminescent coordination polymer for the selective detection of explosive nitroaromatics and the mutagenic pollutant TNP.

作者信息

Hossain Ersad, Hazra Abhijit, Datta Sourav, Khan Samim, Pramanik Samit, Banerjee Priyabrata, Mir Mohammad Hedayetullah, Mukhopadhyay Subrata

机构信息

Department of Chemistry, Jadavpur University Kolkata 700 032 India.

Electric Mobility & Tribology Research Group, CSIR-Central Mechanical Engineering Research Institute Mahatma Gandhi Avenue Durgapur 713 209 India

出版信息

RSC Adv. 2024 Jan 2;14(1):397-404. doi: 10.1039/d3ra06926e.

Abstract

Explosive nitroaromatic compounds (epNACs) are a group of chemicals that have caused significant human casualties through terrorist attacks and they also pose health risks. For the benefit of homeland security and environmental health, there is room for advancing research on the precise detection of epNACs. Coordination polymers (CPs) successfully serve this purpose because of their binding abilities and quenching capabilities. In this regard, a one-dimensional (1D) CP [Zn(bdc)(avp)(HO)] (1; Hbdc = 1,4-benzenedicarboxylic acid and avp = 4-[2-(9-anthryl)vinyl]pyridine) was synthesized, which remarkably demonstrated extremely efficient ratiometric and selective sensing capacity toward epNACs and the mutagenic pollutant 2,4,6-trinitrophenol (TNP) with a quick response. Density functional theory (DFT) calculations provided a thorough analysis of the mechanistic routes behind the quenching reaction. Herein, geometrically accessible interaction sites were strategically decorated using anthracene moieties, allowing the quick and precise detection of explosive nitro derivatives and the carcinogenic pollutant TNP with increased sensitivity.

摘要

爆炸性硝基芳香族化合物(epNACs)是一类通过恐怖袭击已造成重大人员伤亡且还构成健康风险的化学物质。为了国土安全和环境卫生,推进对epNACs精确检测的研究仍有空间。配位聚合物(CPs)因其结合能力和猝灭能力而成功地满足了这一目的。在这方面,合成了一种一维(1D)CP [Zn(bdc)(avp)(HO)](1;Hbdc = 1,4-苯二甲酸,avp = 4-[2-(9-蒽基)乙烯基]吡啶),其对epNACs和诱变污染物2,4,6-三硝基苯酚(TNP)具有显著高效的比率型和选择性传感能力,且响应迅速。密度泛函理论(DFT)计算对猝灭反应背后的机理途径进行了全面分析。在此,利用蒽基部分对几何上可及的相互作用位点进行了策略性修饰,从而能够以更高的灵敏度快速精确地检测爆炸性硝基衍生物和致癌污染物TNP。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/5767/10759258/5e54e977b59e/d3ra06926e-f1.jpg

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