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氟芬那酸在 Amberlite XAD-4 树脂和掺银二氧化钛/Amberlite XAD-4 树脂修饰碳电极上的电化学行为。

Electrochemical behavior of flufenamic acid at amberlite XAD-4 resin and silver-doped titanium dioxide/ amberlite XAD-4 resin modified carbon electrodes.

机构信息

Electrochemistry and Materials Group, Department of Chemistry, K.L.E. Institute of Technology, Gokul, Hubballi-580 030, Visvesvaraya Technological University, Karnataka, India; Department of Chemistry and Biochemistry, Lamar University, Beaumont, TX, 77710, United States.

Electrochemistry and Materials Group, Department of Chemistry, K.L.E. Institute of Technology, Gokul, Hubballi-580 030, Visvesvaraya Technological University, Karnataka, India.

出版信息

Colloids Surf B Biointerfaces. 2019 May 1;177:407-415. doi: 10.1016/j.colsurfb.2019.02.022. Epub 2019 Feb 12.

Abstract

Novel sensors based on carbon paste assorted with amberlite XAD-4 resin and silver-doped titanium dioxide/amberlite XAD-4 resin (Ag-TiO/XAD) were designed and employed for sensitive detection of flufenamic acid (FFA). The main objective of this study is to develop novel electrochemical sensors for more sensitive and selective detection of FFA and to propose its oxidation mechanism. In this perspective, we have developed modified electrodes using amberlite XAD-4 matrix and Ag-TiO/XAD-4 mixture. These sensors when used in conjunction with different voltammetric techniques to observe enhanced outcome on FFA electrode reaction in PBS of pH 7.0. Our data confirmed exceptional stability, sensitivity, and quick responses for FFA. The effect of modifier, analyte concentration, pH of buffer solution, pre-concentration time, and sweep rates on electrochemical behavior of FFA was investigated. The current intensities were linearly proportional to the concentration of FFA. From the calibration plot of different concentrations of FFA, the detection limit of 3.6 nM at XAD-CPE and 1.2 nM, respectively at AgTiO/XAD-CPE were obtained. The estimation of FFA in biological as well as clinical samples was achieved using the chemically modified electrodes.

摘要

基于碳糊与 Amberlite XAD-4 树脂和掺银二氧化钛/ Amberlite XAD-4 树脂(Ag-TiO/ Amberlite XAD)混合的新型传感器被设计并用于灵敏检测氟芬酸(FFA)。本研究的主要目的是开发新型电化学传感器,以实现对 FFA 的更灵敏和选择性检测,并提出其氧化机制。为此,我们使用 Amberlite XAD-4 基质和 Ag-TiO/ Amberlite XAD-4 混合物开发了改性电极。这些传感器结合不同的伏安技术,在 pH 7.0 的 PBS 中观察到对 FFA 电极反应的增强结果。我们的数据证实了 FFA 的出色稳定性、灵敏度和快速响应。研究了修饰剂、分析物浓度、缓冲溶液 pH 值、预浓缩时间和扫速对 FFA 电化学行为的影响。电流强度与 FFA 的浓度呈线性比例。从不同浓度的 FFA 的校准曲线中,在 XAD-CPE 处获得了 3.6 nM 的检测限,而在 AgTiO/ Amberlite XAD-CPE 处则分别获得了 1.2 nM 的检测限。使用化学修饰电极实现了生物和临床样品中 FFA 的估计。

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