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基于酸处理的TATP的“一步法”简化电化学传感

"One-step" simplified electrochemical sensing of TATP based on its acid treatment.

作者信息

Munoz Rodrigo A A, Lu Donglai, Cagan Avi, Wang Joseph

机构信息

Departments of Chemical Engineering and Chemistry and Biochemistry, Biodesign Institute, Arizona State University, Tempe, AZ 85287-5801, USA.

出版信息

Analyst. 2007 Jun;132(6):560-5. doi: 10.1039/b701356f. Epub 2007 Apr 30.

Abstract

A fast, simple and sensitive electrochemical method for sensing peroxide-based explosives based on their acid treatment is reported. The method relies on the high electrocatalytic activity of Prussian-blue (PB)-modified electrodes towards the acid-generated hydrogen peroxide in the harsh acidic medium (down to pH 0.3) used for releasing hydrogen peroxide. Such effective operation of PB electrochemical sensors in strongly acidic media eliminates the need for an additional neutralization step required in analogous peroxidase-based assays (due to acid-induced enzyme deactivation processes). Factors affecting the efficiency of the acid pre-treatment of triacetone triperoxide (TATP) have been examined and optimized to allow its sensitive measurement down to the 50 ng level within 60 s. Chronoamperometric detection of microgram amounts of solid TATP, following a one-minute acid mixing and placing a 20 microL droplet onto a disposable PB-modified screen-printed electrode is illustrated. Similar results were obtained for the peroxide explosive hexamethylene triperoxide diamine (HMTD). By greatly simplifying the analytical procedure, such an acid-operated "artificial peroxidase" electrocatalytic transducer holds great promise for designing "one-step", user-friendly, miniaturized, cost-effective devices for field screening of peroxide explosives.

摘要

报道了一种基于过氧化物类炸药酸处理的快速、简单且灵敏的电化学传感方法。该方法依赖于普鲁士蓝(PB)修饰电极在用于释放过氧化氢的苛刻酸性介质(低至pH 0.3)中对酸生成的过氧化氢具有高电催化活性。PB电化学传感器在强酸性介质中的这种有效操作消除了类似基于过氧化物酶的检测中所需的额外中和步骤(由于酸诱导的酶失活过程)。已对影响三丙酮三过氧化物(TATP)酸预处理效率的因素进行了研究和优化,以使其在60秒内能够灵敏检测低至50 ng的水平。展示了在一分钟酸混合后,将20微升液滴置于一次性PB修饰的丝网印刷电极上,对微克量的固体TATP进行计时电流检测。对于过氧化物炸药六亚甲基三过氧化二胺(HMTD)也获得了类似结果。通过极大地简化分析程序,这种酸操作的“人工过氧化物酶”电催化传感器在设计用于过氧化物炸药现场筛查的“一步式”、用户友好、小型化且经济高效的装置方面具有巨大潜力。

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