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用于邻苯二甲酸酯高效固相微萃取的氧化锌/聚吡咯纳米复合涂层的电化学制备

Electrochemical preparation of zinc oxide/polypyrrole nanocomposite coating for the highly effective solid-phase microextraction of phthalate esters.

作者信息

Zakerian Razieh, Bahar Soleiman

机构信息

Department of Chemistry, Faculty of Science, University of Kurdistan, Sanandaj, I.R. IRAN.

出版信息

J Sep Sci. 2017 Nov;40(22):4439-4445. doi: 10.1002/jssc.201700799. Epub 2017 Oct 25.

Abstract

In this work, zinc oxide/polypyrrole nanocomposite coating was fabricated on stainless steel and evaluated as a novel headspace solid-phase microextraction fiber coating for extraction of ultra-trace amounts of environmental pollutants, namely, phthalate esters, in water samples. The fiber nanocomposite were prepared by a two-step process including the electrochemical deposition of polypyrrole on the surface of stainless steel in the first step, and electrochemical deposition of zinc oxide nanosheets in the second step. Porous structure together with zinc oxide nanosheets with the average diameter of 30 nm were observed on the surface by using scanning electron microscopy. The effective parameters on extraction of phthalate esters (i.e., extraction temperature, extraction time, desorption temperature, desorption time, salt concentration, and stirring rate) were investigated and optimized by one-variable-at-a-time method. Under optimized conditions (extraction temperature, 90°C; extraction time, 40 min; desorption temperature, 270°C; desorption time, 5 min; salt concentration, 25% w/v; and stirring rate, 1000 rpm), the limits of detection were in the range of 0.05-0.8 μg/L, and the repeatability and fiber-to-fiber reproducibility were in the ranges of 6.1-7.3% and 8.7-10.2%, respectively.

摘要

在本研究中,在不锈钢表面制备了氧化锌/聚吡咯纳米复合涂层,并将其作为一种新型顶空固相微萃取纤维涂层,用于萃取水样中痕量的环境污染物——邻苯二甲酸酯。该纤维纳米复合材料通过两步法制备,第一步是在不锈钢表面电化学沉积聚吡咯,第二步是电化学沉积氧化锌纳米片。通过扫描电子显微镜观察到表面具有多孔结构以及平均直径为30 nm的氧化锌纳米片。采用单因素法研究并优化了影响邻苯二甲酸酯萃取的有效参数(即萃取温度、萃取时间、解吸温度、解吸时间、盐浓度和搅拌速率)。在优化条件下(萃取温度90°C;萃取时间40 min;解吸温度270°C;解吸时间5 min;盐浓度25% w/v;搅拌速率1000 rpm),检测限在0.05 - 0.8 μg/L范围内,重复性和纤维间重现性分别在6.1 - 7.3%和8.7 - 10.2%范围内。

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