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用于神经毒剂模拟物蒸气荧光开启检测的锆基金属有机框架负载琼脂糖水凝胶

Zirconium-based metal-organic framework loaded agarose hydrogels for fluorescence turn-on detection of nerve agent simulant vapor.

作者信息

Lei You, Gao Yuting, Xiao Yi, Huang Pengcheng, Wu Fang-Ying

机构信息

School of Chemistry and Chemical Engineering, Nanchang University, Nanchang, 330031, China.

Jiangxi Province Key Laboratory of Modern Analytical Science, Nanchang University, Nanchang, 330031, China.

出版信息

Anal Methods. 2023 Nov 2;15(42):5674-5682. doi: 10.1039/d3ay01539d.

DOI:10.1039/d3ay01539d
PMID:37860869
Abstract

Developing reliable sensors that accurately detect deadly chemical gases is critical to global security. Nerve agents are one of the most dangerous chemicals in the world and are often found in gaseous forms in the environment, which remain a challenge to detect because of their low levels. In this paper, a fluorescent probe based on a Zr-based metal-organic framework UiO-66-NH was proposed. The specific binding between the Zr-O site of UiO-66-NH and diethyl chlorophosphate (DCP) blocked the ligand-to-metal charge transfer (LMCT) process in UiO-66-NH, thereby enabling the fluorescence turn-on detection of DCP. More importantly, a simple and portable hydrogel soft-solid platform (UiO-66-NH@Aga) was constructed by incorporating UiO-66-NH into the formation process of agarose (Aga) hydrogel for fast and sensitive detection of gaseous DCP. When the hydrogel was exposed to a low concentration of DCP vapor, its fluorescence changed from colorless to bright blue, allowing visualization of the DCP gas for analysis. The UiO-66-NH@Aga integrated solid-state platform showed an excellent response to DCP vapor in the detection range of 1.98 to 9.90 ppm and with a detection limit of 1.16 ppm. This work opened up a unique way to design a convenient, low cost and practical gas physical examination platform.

摘要

开发能够准确检测致命化学气体的可靠传感器对全球安全至关重要。神经毒剂是世界上最危险的化学物质之一,经常以气态形式存在于环境中,由于其含量低,检测仍然是一项挑战。本文提出了一种基于锆基金属有机框架UiO-66-NH的荧光探针。UiO-66-NH的Zr-O位点与二乙基氯磷酸酯(DCP)之间的特异性结合阻断了UiO-66-NH中的配体到金属的电荷转移(LMCT)过程,从而实现了对DCP的荧光开启检测。更重要的是,通过将UiO-66-NH纳入琼脂糖(Aga)水凝胶的形成过程中,构建了一个简单便携的水凝胶软固体平台(UiO-66-NH@Aga),用于快速灵敏地检测气态DCP。当水凝胶暴露于低浓度的DCP蒸汽时,其荧光从无色变为亮蓝色,从而可以可视化DCP气体进行分析。UiO-66-NH@Aga集成固态平台在1.98至9.90 ppm的检测范围内对DCP蒸汽表现出优异的响应,检测限为1.16 ppm。这项工作开辟了一条设计方便、低成本且实用的气体物理检测平台的独特途径。

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