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Microwave-enhanced voltammetric detection of copper(II) at gold nanoparticles-modified platinum microelectrodes

机译:纳米金修饰的铂微电极的微波伏安法测定铜(II)

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摘要

In this work, in situ microwave activation of electrochemical detection of copper(II) at a gold nanoparticles-modified Pt microelectrode (Au-NPs/Pt) was investigated. Self-focusing of the microwave radiation creates an extreme localized heating at the electrode/solution (electrolyte) interface within the diffusion layer of the electrode with an inverted thermal gradient and convective flow. The temperature at the electrode/solution interface is calibrated with reversible one electron redox system Fe(CN)_6~(3-/4-) in aqueous K_2SO_4 solution (pH 3). Significantly increased currents were observed at the Au-NPs/Pt electrode compared to that at bare Pt electrode under the low microwave power. The Cu(II) detection at the Au_NPs/Pt microelectrode by cyclic voltammetry is also shown to be strongly enhanced by microwave radiation, which triggers Cu(II) current response orders of magnitude higher than those expected values in conventional conditions. The limit of detection by cyclic voltammetry is found to be 0.1 _M and 1.0 _M with and without microwave radiation. The effect of surfactant, which blocks the electrochemical Cu(II) signal under conventional conditions, is discussed on the Cu(II) response under the in situ micro_wave radiation of electrochemical process.
机译:在这项工作中,研究了在金纳米粒子修饰的Pt微电极(Au-NPs / Pt)上电化学检测铜(II)的原位微波活化。微波辐射的自聚焦在电极的扩散层内的电极/溶液(电解质)界面处产生极端的局部加热,具有反向的热梯度和对流。电极/溶液界面的温度用K_2SO_4水溶液(pH 3)中可逆的一个电子氧化还原系统Fe(CN)_6〜(3- / 4-)进行校准。在低微波功率下,与裸露的Pt电极相比,Au-NPs / Pt电极的电流明显增加。还显示通过微波伏安法在Au_NPs / Pt微电极处检测到的Cu(II)通过微波辐射大大增强,这触发了Cu(II)电流响应,其数量级比常规条件下的预期值高。发现在有和没有微波辐射的情况下,循环伏安法的检测极限分别为0.1_M和1.0_M。讨论了表面活性剂在常规条件下阻断电化学Cu(II)信号的作用,对电化学过程中原位微波辐射下的Cu(II)响应。

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