Wang Joseph, Pumera Martin, Collins Greg E, Mulchandani Ashok
Department of Chemistry and Biochemistry, New Mexico State University, Las Cruces, New Mexico 88003, USA.
Anal Chem. 2002 Dec 1;74(23):6121-5. doi: 10.1021/ac025746p.
This paper reports on a microfluidic device for the screening of organophosphonate nerve agent degradation products. The miniaturized system relies on an efficient chip-based separation of alkyl methylphosphonic acids (breakdown products of Sarin, Soman, and VX nerve agents) followed by their sensitive contactless conductivity detection. Experimental parameters relevant to the separation and detection processes have been optimized to yield high sensitivity (with 48-86 microg L(-1) detection limits), fast response (50 s for a three alkyl methylphosphonic acid mixture), high precision (RSD = 3.8-5.0%), and good linearity (over the 0.3-100 mg L(-1) range). Applicability to natural (river) water samples is demonstrated. The new microsystem offers promise for monitoring degradation products of chemical warfare agents, with advantages of speed/warning, efficiency, portability, sample size, and cost compared to conventional ion chromatography or capillary electrophoresis systems.
本文报道了一种用于筛选有机膦酸酯类神经毒剂降解产物的微流控装置。该小型化系统依靠基于芯片的高效分离烷基甲基膦酸(沙林、梭曼和VX神经毒剂的分解产物),随后进行灵敏的非接触式电导检测。对与分离和检测过程相关的实验参数进行了优化,以实现高灵敏度(检测限为48 - 86 μg L⁻¹)、快速响应(三种烷基甲基膦酸混合物为50秒)、高精度(相对标准偏差 = 3.8 - 5.0%)以及良好的线性(在0.3 - 100 mg L⁻¹范围内)。证明了该方法对天然(河水)水样的适用性。与传统离子色谱或毛细管电泳系统相比,这种新型微系统在监测化学战剂降解产物方面具有速度/预警、效率、便携性、样品量和成本等优势,展现出良好的应用前景。