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开发一种新型超选择性和超高灵敏度的无标记直接荧光纳米生物传感器,用于直接快速现场检测爆炸物三丙酮三过氧化物。

Developing a novel ultraselective and ultrasensitive label-free direct spectrofluorimetric nanobiosensor for direct highly fast field detection of explosive triacetone triperoxide.

机构信息

Hormozi Laboratory of Chemistry and Biochemistry, 9861334367, Zabol, Iran.

出版信息

Anal Chim Acta. 2024 Sep 1;1320:343016. doi: 10.1016/j.aca.2024.343016. Epub 2024 Jul 24.

Abstract

BACKGROUND

Direct detection of the notorious explosive triacetone triperoxide (TATP) is very difficult because it lacks facile ionization and UV absorbance or fluorescence. Besides, the current indirect methods are time-consuming and need a pre-step for TATP cleavage to hydrogen peroxide. Moreover, they commonly show significant false-positive results in the presence of some camouflage which limits their field applications. Herein, for the first time, a novel label-free field-applicable spectrofluorimetric nanobiosensor was developed for direct TATP detection using a novel activated-protein protected gold nanocluster (ABSA-AuNCs; QY = 28.3 %) synthesized by a combined protein-assisted-ultrasonication procedure.

RESULTS

The ABSA-AuNCs revealed a fluorescence spectrum centered at 330.0 nm which was significantly quenched by TATP (binding constant = 154.06 M; ΔG = -12.5 kJ mol; E(%) = 88.5 %). This phenomenon was used as a basis for direct TATP quantification, providing a working range of 0.01-40.0 mg L and a detection limit of 6.7 μg L which is the lowest LOD provided for TATP detection up to now. A %RSD of 0.9 % and 1.56 % was obtained for repeatability and inter-day reproducibility, respectively. The selectivity was checked against a variety of camouflages, revealing ultra-selectivity. Several synthetic samples prepared by several camouflages and real samples (clay soil and real water media) were analyzed, revealing quantitative recoveries of TATP.

SIGNIFICANCE

During the production of the notorious explosive TATP, it can be discharged into water and soil. This novel method eliminated the false-positive results of traditional methods and is applicable for direct quantitative detection of camouflaged TATP and its residues in real soil and water samples in a highly short response time (2 min). The camouflaged TATP analysis is important for tracking the terrorist attacks in field conditions and analysis of soil and water can provide a first indication of the location of the production site.

摘要

背景

由于缺乏易离子化和紫外吸收或荧光,直接检测臭名昭著的爆炸物三乙酰基三过氧化物(TATP)非常困难。此外,目前的间接方法既耗时又需要 TATP 断裂为过氧化氢的前一步。此外,它们在存在一些伪装物时通常会出现显著的假阳性结果,这限制了它们的现场应用。在此,首次开发了一种新型无标记现场应用的荧光纳米生物传感器,用于使用通过联合蛋白辅助超声程序合成的新型活化蛋白保护金纳米簇(ABSA-AuNCs;QY=28.3%)直接检测 TATP。

结果

ABSA-AuNCs 显示出以 330.0nm 为中心的荧光光谱,该光谱被 TATP 显著猝灭(结合常数=154.06M;ΔG=-12.5kJmol;E(%)=88.5%)。这种现象被用作直接 TATP 定量的基础,提供了 0.01-40.0mgL 的工作范围和 6.7μg L 的检测限,这是迄今为止提供的 TATP 检测的最低 LOD。重复性和日间重现性的%RSD 分别为 0.9%和 1.56%。对各种伪装物进行了选择性检查,显示出超高选择性。分析了用几种伪装物制备的几种合成样品和真实样品(粘土土壤和真实水介质),显示出 TATP 的定量回收率。

意义

在臭名昭著的爆炸物 TATP 的生产过程中,它可能会排放到水和土壤中。这种新方法消除了传统方法的假阳性结果,可用于直接定量检测伪装 TATP 及其在真实土壤和水样中的残留,具有极高的短响应时间(2 分钟)。伪装 TATP 的分析对于在现场条件下追踪恐怖袭击以及分析土壤和水是否提供生产地点的初步指示非常重要。

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