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首页> 外文期刊>Sensors and Actuators >Electrocatalytic oxidation of hydroxylamine at a rutin multi-wall carbon nanotubes modified glassy carbon electrode: Improvement of the catalytic activity
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Electrocatalytic oxidation of hydroxylamine at a rutin multi-wall carbon nanotubes modified glassy carbon electrode: Improvement of the catalytic activity

机译:芦丁多壁碳纳米管修饰玻碳电极上羟胺的电催化氧化:提高催化活性

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A highly sensitive sensor for the determination of hydroxylamine was described. It consists of a rutin multi-wall carbon nanotubes (RMWCNT) modified glassy carbon electrode (GCE). The cyclic voltammograms of the modified electrode indicated that the surface confined rutin were strongly dependent on the solution pH, as anticipated for quinone/hydroquinone functionalities. The RMWCNT modified GCE exhibited catalytic activity toward the electro-oxidation of hydroxylamine. The results show that there is a dramatic enhancement of the anodic peak current of hydroxylamine oxidation at RMWCNT modified GCE relative the value obtained at the rutin modified GCE (RMGCE) or activated GCE (AGCE). In other words the combination of MWCNT and mediator (rutin here) definitely improve the characteristics of hydroxylamine oxidation. The kinetics parameters such as the electron transfer coefficient, α, the heterogeneous rate constant, k', and the standard heterogeneous rate constant, k~0, for the electro-oxidation of hydroxylamine at the RMWCNT modified GCE were determined using RDE voltammetry. The results show k' are strongly potential dependent and increase with increasing the potential which considering for drawing the Koutecky-Levich plot. In amperometric measurements at a RMWCNT modified electrode during the addition of even 1.0 μM hydroxylamine, a well-defined response was observed. The plot of electrocatalytic current versus hydroxylamine concentration is constituted from two linear segments, corresponding to two different range of 1.0-33.8 and 33.8-81.7 μM. Finally, it was found that the relative standard deviation of amperometry current of 10.0 μM hydroxylamine for 15 replicate determinations is 2.6%.
机译:描述了一种用于测定羟胺的高灵敏度传感器。它由芦丁多壁碳纳米管(RMWCNT)修饰的玻碳电极(GCE)组成。修饰电极的循环伏安图表明,如对苯醌/对苯二酚的功能所预期的那样,表面受限的芦丁在很大程度上取决于溶液的pH值。 RMWCNT修饰的GCE对羟胺的电氧化表现出催化活性。结果表明,相对于芦丁修饰的GCE(RMGCE)或活化的GCE(AGCE)所获得的值,在RMWCNT修饰的GCE处羟胺氧化的阳极峰值电流显着提高。换句话说,MWCNT和介体(此处为芦丁)的组合无疑可以改善羟胺氧化的特性。使用RDE伏安法测定了在RMWCNT修饰的GCE上电氧化羟胺的动力学参数,如电子转移系数α,异质速率常数k'和标准异质速率常数k〜0。结果表明,k'与电势密切相关,并且随着电势​​的增加而增加,考虑绘制Koutecky-Levich图时,k'会增加。在加入甚至1.0μM羟胺的过程中,在RMWCNT修饰的电极上进行的安培测量中,观察到明确定义的响应。电催化电流与羟胺浓度的关系图由两个线性部分组成,分别对应于1.0-33.8和33.8-81.7μM的两个不同范围。最后,发现15次重复测定的10.0μM羟胺的安培电流的相对标准偏差为2.6%。

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