首页> 外文期刊>Journal of Materials Chemistry, A. Materials for energy and sustainability >Metal-organic frameworks with inherent recognition sites for selective phosphate sensing through their coordination-induced fluorescence enhancement effect
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Metal-organic frameworks with inherent recognition sites for selective phosphate sensing through their coordination-induced fluorescence enhancement effect

机译:具有固有识别位点的金属有机框架,通过其配位诱导的荧光增强作用可选择性进行磷酸盐传感

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摘要

Luminescent metal-organic frameworks (LMOFs) have attracted significant attention as a unique class of sensing materials. In this work, the intrinsically fluorescent amino derivative of UiO-66 (UiO-66-NH2) was successfully exploited as a fluorescent probe for the sensitive and selective detection of phosphate anions in an aqueous medium. The inorganic Zr-O clusters and organic BDC-NH2 linkers in the elaborated UiO-66-NH2 MOFs were individually designed as phosphate recognition sites and signal reporters. The intrinsic fluorescence of BDC-NH2 was tuned from high to weak emission by ligand-to-metal charge transfer (LMCT) upon its integration into the framework of UiO-66-NH2 MOFs and this weakened fluorescence could be proportionally recovered in correlation with the applied phosphate level through a newly developed competitive coordination effect. The specificity for phosphate recognition of the employed sensory platform was scarcely affected by other possible interfering species. The efficacy of this strategy was demonstrated by a linear phosphate detection range of 5-150 mu M and a limit of detection of 1.25 mu M, which was far below the detection requirement of phosphate discharge criteria in the water environment. The possible sensing mechanisms for anionic phosphate detection using the currently established fluorescent probe, including host-guest interaction and structure-property correlation, were systematically investigated using XPS, FT-IR, XRD, TEM and N-2 sorption techniques.
机译:发光金属有机框架(LMOF)作为一种独特的传感材料引起了广泛的关注。在这项工作中,UiO-66(UiO-66-NH2)的固有荧光氨基衍生物已成功地用作荧光探针,用于灵敏和选择性地检测水性介质中的磷酸根阴离子。精心设计的UiO-66-NH2 MOF中的无机Zr-O簇和有机BDC-NH2连接子分别设计为磷酸盐识别位点和信号报告基因。当BDC-NH2整合到UiO-66-NH2 MOF的骨架中时,通过配体-金属电荷转移(LMCT)将BDC-NH2的固有荧光从高发射调整为弱发射,并且可以与BDC-NH2 MOFs相关地按比例回收这种减弱的荧光。通过新开发的竞争协调效应来应用磷酸盐水平。所使用的感觉平台对磷酸盐识别的特异性几乎不受其他可能的干扰物质的影响。线性磷酸盐检测范围为5-150μM,检测极限为1.25μM,证明了该策略的有效性,该检测限远低于水环境中磷酸盐排放标准的检测要求。使用XPS,FT-IR,XRD,TEM和N-2吸附技术系统地研究了使用当前建立的荧光探针进行阴离子磷酸盐检测的可能的传感机制,包括宿主与客体之间的相互作用和结构性质的相关性。

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