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Tri-functional Fe-Zr bi-metal-organic frameworks enable high-performance phosphate ion ratiometric fluorescent detection

机译:Tri-functional Fe-Zr bi-metal-organic框架使高性能磷酸离子比率计荧光检测

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Metal-organic frameworks (MOFs) featured with flexible design and versatile properties are finding increasing applications. In particular, integrating multiple functions into one framework can bring them improved detection efficiency towards various analytes. Herein, for the first time, a Fe-Zr bi-metal-organic framework (UiO-66(Fe/Zr)-NH2) with three functions (intrinsic fluorescence, peroxidase-mimicking activity, and specific recognition) is designed to establish a ratiometric fluorescent platform for high-performance phosphate ion (Pi) sensing. The use of a fluorescent organic ligand endows the MOF material with a strong intrinsic fluorescence at 435 nm. The presence of Fe3+/Fe(2+)nodes offers good enzyme-like capacity to catalyze theo-phenylenediamine (OPD) substrate to fluorescent OPDox (555 nm), which then quenches the intrinsic fluorescence of UiO-66(Fe/Zr)-NH(2)due to the inner filter effect. The Zr(4+)nodes in the MOF material act as selective sites for Pi recognition. When Pi exists, it specifically adsorbs onto UiO-66(Fe/Zr)-NH(2)and decreases the latter's peroxidase-mimetic activity, resulting in the less production of fluorescent OPDox. As a consequence, the intrinsic fluorescence of UiO-66(Fe/Zr)-NH(2)at 435 nm is restored, and the signal from OPDox at 555 nm is reduced inversely. With the ratiometric strategy, efficient determination of Pi with outstanding sensitivity and selectivity was realized, giving a detection limit down to 85 nM in the concentration range of 0.2-266.7 mu M. Accurate measurement of the target in practical water matrices was also validated, indicating its promising application for Pi analysis in environmental and other fields.
机译:有机框架(mof)了灵活的设计和通用的属性发现越来越多的应用。多个功能集成到一个框架可以让他们提高探测效率对各种分析物。一次,一个Fe-Zr bi-metal-organic框架(uio - 66 (Fe / Zr) - nh2)和三个功能(内在荧光peroxidase-mimicking活动,设计了特定的识别)建立一个比率荧光平台高性能磷酸离子(Pi)传感。使用荧光有机配体赋予财政部材料有很强的内在在435纳米荧光。Fe3 + / Fe(2 +)节点提供了良好enzyme-like能力对催化theo-phenylenediamine门诊部当衬底荧光OPDox(555海里)的固有荧光淬灭uio - 66 (Fe / Zr) nh(2)由于内部过滤器的效果。作为π识别选择性网站。存在,它专门吸附到uio - 66 (Fe / Zr) nh(2)和减少后者的peroxidase-mimetic活动,导致了更少的生产荧光OPDox。因此,内在荧光的uio - 66 (Fe / Zr) nh(2)在435 nm恢复,和信号从555 nm OPDox减少反向。的比率策略有效π的确定与杰出的敏感性和选择性是意识到,给检测限制到85海里的浓度范围0.2 - -266.7μm的精确测量目标在实际水矩阵也验证,表明其有前途的应用程序π分析在环境和其他字段。

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