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金属有机骨架对外源和内源性甲醛的选择性和灵敏检测。

Metal-Organic Framework Showing Selective and Sensitive Detection of Exogenous and Endogenous Formaldehyde.

出版信息

Inorg Chem. 2018 Dec 17;57(24):15149-15157. doi: 10.1021/acs.inorgchem.8b02411. Epub 2018 Dec 5.

Abstract

In this work, we report a new hydrazine-functionalized Al(III)- based metal-organic framework having MIL-53 (MIL = Material of Institute Lavoisier) framework topology for the sensitive and selective detection of formaldehyde (FA). The phase purity of the thermally activated and as-synthesized forms of the material was examined by X-ray powder diffraction experiments, Fourier transform infrared spectroscopy, and thermogravimetric analysis. The desolvated material (1') showed great potential for the selective sensing of FA in the existence of other potentially competitive aldehydes in both aqueous and 10 mM HEPES buffer (pH = 7.4) media. The fluorescence "turn-on" behavior of the reaction-based probe can be ascribed to the inhibition of the photoinduced electron transfer process (from the hydrazine group to the phenyl ring) because of the formation of the hydrazone moiety. The detection limit of the probe toward FA in HEPES buffer is 8.37 μM (0.25 ppm), which lies below the intracellular concentration of FA (100-400 μM). A very short response time (1 min) has been displayed by 1' for FA sensing. Moreover, a remarkable enhancement in the emission intensity (sevenfold and fourfold in aqueous and HEPES buffer media, respectively) of 1' was observed after 1 min of FA addition. Furthermore, the ability of the probe to detect FA in the vapor phase was demonstrated. Interestingly, the material is also capable to detect endogenous FA in cancer cells. All the above discussed features clearly reveal that the present material has a huge potential for selective recognition of FA in both real water and biological samples.

摘要

在这项工作中,我们报道了一种新的腙功能化的基于 Al(III)的金属-有机骨架,具有 MIL-53(MIL = 拉瓦锡材料研究所)骨架拓扑结构,用于灵敏和选择性检测甲醛(FA)。通过 X 射线粉末衍射实验、傅里叶变换红外光谱和热重分析,对热激活和合成形式的材料的相纯度进行了检查。在水相和 10mM HEPES 缓冲液(pH = 7.4)介质中,即使存在其他潜在竞争醛,去溶剂化材料(1')也显示出对 FA 的选择性传感的巨大潜力。基于反应的探针的荧光“开启”行为可以归因于形成腙部分,因为光诱导电子转移过程(从腙基团到苯环)被抑制。探针在 HEPES 缓冲液中对 FA 的检测限为 8.37μM(0.25ppm),低于细胞内 FA 的浓度(100-400μM)。1'对 FA 的传感显示出非常短的响应时间(1 分钟)。此外,在添加 FA 1 分钟后,观察到 1'的发射强度显著增强(在水相和 HEPES 缓冲液中分别增加了七倍和四倍)。此外,还证明了探针在气相中检测 FA 的能力。有趣的是,该材料还能够检测癌细胞中的内源性 FA。所有上述讨论的特征清楚地表明,该材料在真实水和生物样品中对 FA 的选择性识别具有巨大的潜力。

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