首页> 外文期刊>Electrophoresis: The Official Journal of the International Electrophoresis Society >Amperometric detection in the presence of carbon nanotubes dispersed in background electrolyte: Evaluating its suitability for capillary electrokinetic chromatography separations of polyphenolic compounds
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Amperometric detection in the presence of carbon nanotubes dispersed in background electrolyte: Evaluating its suitability for capillary electrokinetic chromatography separations of polyphenolic compounds

机译:在分散在背景电解质中的碳纳米管存在下进行安培检测:评估其在多酚化合物毛细管电动色谱分离中的适用性

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摘要

This work reports on the positive effects observed upon both the separation and analytical signals in electrophoretic separations of selected phenolic compounds when using aqueous BGE containing carbon nanotubes (CNTs) in connection to electrochemical detection (ECD). The influence of the presence of surfactant-coated CNTs in the BGE upon the amperometric response of probe compounds was evaluated under hydrodynamic regime in capillary flow injection experiments as well as electrophoretic separations. Among the surfactants employed to disperse CNTs within BGE, SDS shows the best results in terms of dispersion stability and degree of dispersion of the CNTs. ECD allows working with BGEs containing CNTs concentrations of, at least, 24.0 mg/L without increasing of baseline noise, on the opposite to that reported when using UV-visible detection, and the presence of CNTs in the BGE improves the electrochemical response of some of the tested compounds. These benefits were reflected in higher sensibility in the electrochemical signal and additional improved resolution in the electrophoretic separation of (+/-)-catechin and sinapic acid when using these BGE containing CNTs.
机译:这项工作报告了在使用含碳纳米管(CNTs)的BGE水溶液与电化学检测(ECD)结合使用时,对选定的酚类化合物进行电泳分离时,在分离和分析信号上观察到的积极作用。在毛细管流动注射实验以及电泳分离的流体力学条件下,评估了BGE中表面活性剂涂覆的CNT的存在对探针化合物的安培响应的影响。在用于在BGE中分散CNT的表面活性剂中,就分散稳定性和CNT的分散度而言,SDS表现出最好的结果。 ECD允许使用浓度至少为24.0 mg / L的CNT的BGE,而不会增加基线噪音,这与使用UV可见检测所报道的相反,BGE中CNT的存在改善了某些电化学反应的测试化合物。当使用这些含BGE的CNT时,电化学信号的更高灵敏度和电泳分离(+/-)-儿茶素和芥子酸的分离分辨率得到了进一步提高,体现了这些优势。

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