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将 Brønsted 酸功能化到氨基功能化的 MOF 中,作为用于检测铝离子和赖氨酸的双功能荧光开启传感器。

Post-imparting Brønsted acidity into an amino-functionalized MOF as a bifunctional luminescent turn-ON sensor for the detection of aluminum ions and lysine.

机构信息

School of Chemistry and Materials Science & Jiangsu Key Laboratory of Green Synthetic Chemistry for Functional Materials, Jiangsu Normal University, Xuzhou, Jiangsu 221116, China.

出版信息

Dalton Trans. 2019 Sep 28;48(36):13834-13840. doi: 10.1039/c9dt02962a. Epub 2019 Sep 4.

Abstract

A novel aldehyde- and amino-functionalized luminescent metal-organic framework, Cd-TCHO, was constructed through the solvothermal reaction of 4,4',4''-tricarboxytriphenylamine, 2-amino-3-pyridinecarboxaldehyde and cadmium nitrate and was characterized. Post-synthetically oxidizing the aldehyde groups into carboxylate groups afforded a new complex, Cd-TCOOH, and this successful conversion process was confirmed by FT-IR and H NMR studies. With the Brønsted acidic sites inside the cavities of Cd-TCOOH, it could be used as a luminescent sensor for Al detection with a high selectivity and sensitivity (LOD = 0.54 ppb), which could be attributed to the coordination between free Brønsted acidic sites and Al. Importantly, it could also detect Lys among 20 kinds of natural amino acids; the selectivity, sensitivity and the sensing mechanism are discussed in detail. Also, both of the sensing processes were carried out in the HEPES buffer.

摘要

一种新型的醛基和氨基功能化的发光金属有机骨架 Cd-TCHO 通过 4,4',4''-三羧基三苯胺、2-氨基-3-吡啶甲醛和硝酸镉的溶剂热反应合成得到,并进行了表征。通过后合成将醛基氧化为羧酸盐基团,得到了一个新的配合物 Cd-TCOOH,这一成功的转化过程通过 FT-IR 和 H NMR 研究得到了证实。由于 Cd-TCOOH 空腔内部具有 Brønsted 酸性位,因此它可以用作 Al 检测的荧光传感器,具有高选择性和灵敏度(LOD = 0.54 ppb),这可以归因于自由 Brønsted 酸性位与 Al 的配位。重要的是,它还可以在 20 种天然氨基酸中检测赖氨酸;详细讨论了选择性、灵敏度和传感机制。此外,两种传感过程均在 HEPES 缓冲液中进行。

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