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首页> 外文期刊>Journal of inorganic and organometallic polymers and materials >A Zn-Based Fluorescent Coordination Polymer as Bifunctional Sensor: Sensitive and Selective Aqueous-Phase Detection of Picric Acid and Heavy Metal Ion
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A Zn-Based Fluorescent Coordination Polymer as Bifunctional Sensor: Sensitive and Selective Aqueous-Phase Detection of Picric Acid and Heavy Metal Ion

机译:基于Zn的荧光配位聚合物作为双功能传感器:野生酸和重金属离子的敏感和选择性水相检测

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摘要

In contrast to the traditionally exploited cages, organic chromophores and metal organic frameworks (MOFs) as a sensing model, the chemistry of 1D coordination polymers as promising sensors is still under explored and needs special attention. Herein, a zinc 1D coordination polymer, {[Zn(HPydc)(2)]center dot 2H(2)O}(n) (1) has been synthesized using 2,3-Pyridinedicarboxylic acid (H(2)Pydc) and characterized employing FT-IR, single crystal X-ray, PXRD, TG, CV, spectral studies, time resolved fluorescence and Hirshfeld surface analysis. The 1 displayed intermolecular OMIDLINE HORIZONTAL ELLIPSISH, ClMIDLINE HORIZONTAL ELLIPSISH and others interactions, which create a supramolecular network. These interactions have been substantiated by Hirshfeld surface analyses. 1 exhibit promising dual functional sensing behaviour for recognition of picric acid (PA) and Pd2+ ions over other nitroaromatic compounds (NACs) and metal ions via fluorescence quenching with high selectivity and sensitivity in the aqueous phase. The unique properties of 1 as a potential bi-functional chemosensor for the detection of both PA and Pd2+ in the aqueous medium has been estabilished as confirmed by its high quenching efficiency, selectivity and superior detection limit. The sensing mechanism is explored by spectral titrations, time decay and also by the DFT (B3LYP/def2-SVP) studies. The present investigation adds to the advancement of MOF or CP materials research, particularly in their application as biological and environmental fluorescent chemosensors.
机译:与传统利用的笼子,有机发色团和金属有机框架(MOF)相比,作为传感模型,1D协调聚合物的化学作为有前途传感器的化学仍在探索,需要特别注意。这里,使用2,3-吡啶二羧酸(H(2)PYDC)合成了锌1D配位聚合物,{[Zn(HPYDC)(2)]中心点2H(2)O}(N)(N)(1)特征在于采用FT-IR,单晶X射线,PXRD,TG,CV,光谱研究,时间分辨荧光和HIRSHFELD表面分析。 1显示的分子间Omidline水平椭圆形,Clmidline水平椭圆和其他相互作用,它创建了一个超分子网络。这些相互作用已经通过HIRSHFELD表面分析来证实。图1表现出有希望的双函数感测行为,用于通过荧光猝灭在其他硝基芳族化合物(NACS)和金属离子上以高选择性和敏感性的荧光猝灭来识别麦酸(PA)和PD2 +离子。通过其高淬火效率,选择性和优异的检测极限证实,已经确定了用于检测水介质中PA和PD2 +的潜在双官能化学传感器的独特性质。通过光谱滴定,时间衰减和DFT(B3LYP / DEF2-SVP)研究探索传感机制。本调查增加了MOF或CP材料研究的进步,特别是在其作为生物和环境荧光化学传感器的应用中。

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