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首页> 外文期刊>Dalton transactions: An international journal of inorganic chemistry >A novel sensitive fluorescent probe of S2O82- and Fe3+ based on covalent post-functionalization of a zirconium(IV) metal-organic framework
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A novel sensitive fluorescent probe of S2O82- and Fe3+ based on covalent post-functionalization of a zirconium(IV) metal-organic framework

机译:基于共价酮金属 - 有机骨架的共价官能化S2O82和Fe3 +新型敏感荧光探针

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摘要

A zirconium metallic organic framework UiO-66-NH2 has been synthesized and is further modified with imidazole-2-carboxaldehyde by a covalent post synthetic route which is based on a Schiff-base reaction. The as-prepared, functionalized MOF named UiO-66-NH2-IM is fully characterized. It retains its structural integrity during the PSM process and shows excellent luminescence and good fluorescence stability in water. It has also been further utilized as a sensitive fluorescent probe for sensing ions. The results show that UiO-66-NH2-IM can be developed into a highly selective and sensitive sensor for the detection of S2O82- (detection limit, 8.63 M) and Fe3+ ions (detection limit, 4.95 M) by fluorescence quenching of UiO-66-NH2-IM. All the possible mechanisms involved are discussed. Remarkably, it is the first covalent post-synthesized MOF to be developed as a colorimetric fluorescent sensor for the detection of S2O82- and Fe3+.
机译:已经合成了锆金属有机框架UIO-66-NH2,通过基于Schiff-Base反应的共价后途径,用咪唑-2-羧甲醛进行进一步用咪唑-2-羧丁醛进行改性。 名为UIO-66-NH2-IM的制备的功能化MOF是完全表征的。 它在PSM过程中保持其结构完整性,并在水中显示出优异的发光和良好的荧光稳定性。 它还进一步用作感应离子的敏感荧光探针。 结果表明,通过UIO的荧光猝灭,可以将UIO-66-NH2-IM开发成用于检测S2O82-(检测极限,8.63M)和Fe3 +离子(检测限,4.95M)的高精度和敏感的传感器。 66-NH2-IM。 讨论了所涉及的所有可能的机制。 值得注意的是,它是第一个作为用于检测S2O82和Fe3 +的比色荧光传感器的共价合成后的MOF。

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