首页> 外文期刊>Journal of Electroanalytical Chemistry: An International Journal Devoted to All Aspects of Electrode Kinetics, Interfacial Structure, Properties of Electrolytes, Colloid and Biological Electrochemistry >A novel platform sensing based on combination of electromembrane-assisted solid phase microextraction with linear sweep voltammetry for the determination of tramadol
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A novel platform sensing based on combination of electromembrane-assisted solid phase microextraction with linear sweep voltammetry for the determination of tramadol

机译:电膜辅助固相微萃取与线性扫描伏安法相结合的新型平台感测法测定曲马多

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This paper aims to introduce a new analytical strategy based on electromembrane-assisted solid phase microextraction (EM-SPME) coupled with electrochemical detection for the electroanalysis of tramadol as a model analyte from urine samples. For this purpose, reduced graphene oxide (r-GO) spin-coated pencil lead was used not only as a solid sorbent for SPME and reinforced cathode of electromembrane extraction (EME) but also, as the working electrode (pencil modified electrode) in electrochemical analysis. A Box-Behnken design and the response surface methodology were used for the optimization of different variables affecting the extraction efficiency. In optimized condition, the detection limit of tramadol was obtained to be 0.0030 mu g mL(-1). Dynamic ranges of the method were obtained within the range of 0.010-0.50 and 0.50-50 mu g mL(-1). The process of coupling SPME with EME decreases the detection limit of the method in urine samples. In addition, EM-SPME can remove the interfering effect of acids, carbohydrates, anions and also other polar compounds that suppress low log P during the measurement. (C) 2015 Elsevier B.V. All rights reserved.
机译:本文旨在介绍一种基于电膜辅助固相微萃取(EM-SPME)结合电化学检测的新分析策略,用于从尿液样本中对曲马多作为模型分析物进行电分析。为此,还原氧化石墨烯(r-GO)旋涂铅笔芯不仅用作SPME的固体吸附剂和增强的电膜萃取阴极(EME),而且还用作电化学中的工作电极(铅笔修饰电极)分析。 Box-Behnken设计和响应面方法用于优化影响萃取效率的不同变量。在最佳条件下,曲马多的检出限为0.0030μg mL(-1)。该方法的动态范围在0.010-0.50和0.50-50μgmL(-1)范围内。将SPME与EME偶联的过程降低了该方法在尿液样品中的检测限。此外,EM-SPME可以消除酸,碳水化合物,阴离子以及其他极性化合物的干扰作用,这些干扰可以抑制测量期间的低logP。 (C)2015 Elsevier B.V.保留所有权利。

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