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首页> 外文期刊>Analytica chimica acta >ELECTROCHEMICAL CHARACTERISTICS OF CONDUCTIVE CARBON CEMENT AS MATRIX FOR CHEMICALLY MODIFIED ELECTRODES
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ELECTROCHEMICAL CHARACTERISTICS OF CONDUCTIVE CARBON CEMENT AS MATRIX FOR CHEMICALLY MODIFIED ELECTRODES

机译:导电碳胶作为化学修饰电极的基质的电化学特性

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Conductive carbon cement (CCC) was evaluated as matrix material for the preparation of electrodes bulk-modified with electrocatalysts. For pure CCC electrodes the background current characteristics were examined. In acidic or neutral phosphate buffers the useful electrode potential range was from -0.3 to + 1.0 V vs. SCE, while in 0.1 mol l(-1) NaOH it was from -0.3 to +0.7 V. The electrochemical reversibility of CCC electrodes was examined by measuring the standard rate constants for the reduction of hexacyanoferrate(III) and the oxidation of hydroquinone, using cyclic voltammetry (CV) and rotating disk experiments. The reversibility of a CCC electrode was comparable with that of a freshly polished glassy carbon electrode and better than that of carbon paste electrodes. CCC was used as matrix for the preparation of electrodes bulk-modified with cuprous oxide and cobalt phthalocyanine (CoPC). With a Cu2O-CCC electrode the oxidation potential of glucose, which shows sluggish kinetics at unmodified carbon electrodes, was strongly reduced. The kinetics of the mediated glucose oxidation has been studied with a rotating disk electrode. It was shown that at glucose concentrations higher than approximately 1 mmol l(-1) the electrochemical regeneration of the catalyst becomes rate-determining. The Cu2O-CCC modified electrode has been applied with a constant potential in flow-injection analysis for the determination of glucose. The long-term stability of the electrode was studied; repeated injections of a glucose solution during a period of 6 h yielded a relative standard deviation of the peak height of 1.8% (n=57). In CV experiments the electrocatalytic activity of CoPC was shown for the oxidation of various compounds such as penicillamine, hydrazine and bile acids. Application of the CoPC-CCC electrode for the detection of bile acids in flow-through detection with a constant or pulsed potential failed, due to a rapid deactivation of the electrode. [References: 66]
机译:导电碳胶(CCC)被评估为基质材料,用于制备用电催化剂进行大量改性的电极。对于纯CCC电极,检查了背景电流特性。在酸性或中性磷酸盐缓冲液中,有用的电极电位范围相对于SCE为-0.3至+ 1.0 V,而在0.1 mol l(-1)NaOH中则为-0.3至+0.7V。CCC电极的电化学可逆性为通过使用循环伏安法(CV)和转盘实验测量用于还原六氰合铁酸盐(III)和对苯二酚氧化的标准速率常数来进行检测。 CCC电极的可逆性与刚抛光的玻璃状碳电极的可逆性相当,并且优于碳糊状电极。 CCC用作制备用氧化亚铜和酞菁钴(CoPC)进行大量修饰的电极的基质。使用Cu2O-CCC电极后,葡萄糖的氧化电势大大降低,而葡萄糖的电势在未修饰的碳电极上显示出缓慢的动力学。已经用旋转盘电极研究了介导的葡萄糖氧化的动力学。结果表明,在葡萄糖浓度高于约1 mmol l(-1)时,催化剂的电化学再生成为决定速度的因素。 Cu2O-CCC修饰电极已在流动注射分析中以恒定电位施加以测定葡萄糖。研究了电极的长期稳定性;在6小时内重复注射葡萄糖溶液产生的峰高的相对标准偏差为1.8%(n = 57)。在CV实验中,显示了CoPC对各种化合物(如青霉胺,肼和胆汁酸)的氧化的电催化活性。由于电极的快速失活,在具有恒定或脉冲电位的流通检测中,CoPC-CCC电极在胆汁酸检测中的应用失败了。 [参考:66]

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