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一种由聚吡咯深共晶溶剂制备的纳米复合材料,涂覆在钢毛细管的内表面上,用于电化学控制微萃取酸性药物,如氯沙坦。

A nanocomposite prepared from a polypyrrole deep eutectic solvent and coated onto the inner surface of a steel capillary for electrochemically controlled microextraction of acidic drugs such as losartan.

机构信息

Department of Chemistry, Tarbiat Modares University, P.O. Box 14115-175, Tehran, 1411713116, Iran.

出版信息

Mikrochim Acta. 2018 Feb 12;185(3):169. doi: 10.1007/s00604-018-2684-y.

Abstract

The authors describe a new coating for use in electrochemically controlled in-tube solid phase microextraction (EC-IT-SPME). It consists of a nanocomposite that was prepared from polypyrrole and deep eutectic solvent (DES) by electrochemical deposition on the inner walls of a stainless steel capillary that serves as a working electrode. The hypertension drug losartan acts as an acidic model analyte. The extraction efficiency, mechanical stability, chemical stability and lifetime of the coating were investigated. It is found to be quite stable in relatively acidic and basic media and to be re-usable >450 times without decrease in extraction efficiency. Its extraction capability in comparison to the commercial polypyrrole coating is better by a factor of 1.5. The coated steel capillary was used as the anode (anion-exchanger), and a platinum electrode was used as the cathode. By passing a sample solution through the electrode, losartan can be extracted by applying a positive potential to the flow. In the next step, losartan is electrochemically desorbed and subjected to HPLC analysis with UV detection. Under optimal conditions, losartan can be quantified with limits of detection that range from 50 to 500 ng L depending on the sample matrix. Response is linear in the 0.1-500 μg L concentration range. The inter- and intra-assay precisions (RSDs; in %, for n = 3) are in the range from 2.4-4.6% and from 1.9-3.9%, respectively. Graphical abstract Schematic of the preparation of a nano-structured polypyrrole-deep eutectic solvent nanocomposite coating placed on the inner surface of a stainless steel capillary and used for electrochemically controlled in-tube solid phase microextraction of losartan from biological samples.

摘要

作者描述了一种用于电化学控制管内固相微萃取(EC-IT-SPME)的新型涂层。它由聚吡咯和深共晶溶剂(DES)通过电化学沉积在不锈钢毛细管内壁上制成,不锈钢毛细管作为工作电极。高血压药物氯沙坦作为酸性模型分析物。研究了涂层的萃取效率、机械稳定性、化学稳定性和寿命。结果表明,该涂层在相对酸性和碱性介质中非常稳定,可重复使用>450 次,萃取效率没有下降。与商业聚吡咯涂层相比,其萃取能力提高了 1.5 倍。涂覆的钢毛细管用作阳极(阴离子交换器),铂电极用作阴极。通过将样品溶液通过电极,可以通过向流动施加正电势来提取氯沙坦。在下一个步骤中,通过施加负电势将氯沙坦电化学解吸,并通过 HPLC 分析进行检测,用紫外检测。在最佳条件下,根据样品基质的不同,氯沙坦的检测限范围为 50 至 500 ng L。响应在 0.1-500 μg L 浓度范围内呈线性。日内和日间精密度(RSD,n=3)分别在 2.4-4.6%和 1.9-3.9%的范围内。

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