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首页> 外文期刊>RSC Advances >A promising photoelectrochemical sensor based on a ZnO particle decorated N-doped reduced graphene oxide modified electrode for simultaneous determination of catechol and hydroquinone
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A promising photoelectrochemical sensor based on a ZnO particle decorated N-doped reduced graphene oxide modified electrode for simultaneous determination of catechol and hydroquinone

机译:一种基于ZnO颗粒修饰的N掺杂还原氧化石墨烯修饰电极的光化学传感器,可同时测定邻苯二酚和对苯二酚

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摘要

This paper describes the two-step synthesis of a nitrogen-doped reduced graphene oxide-ZnO (N-doped RGO-ZnO) nanocomposite and its photo electrochemical application. The novel photo electrochemical sensor fabricated from this ZnO-N-doped RGO nanocomposite exhibits superior performance over a glassy carbon or nitrogen-doped reduced GO nanocomposite for the simultaneous determination of hydroquinone (HQ) and catechol (CC). Cyclic voltammetry (CV) studies reveals that the N-doped RGO-ZnO electrode under optimal conditions shows a peak potential separation between HQ and CC of up to 112 mV in the presence of light, which is larger than an N-doped RGO electrode under the same conditions. Square wave voltammetry (SWV) studies of a system with co-existing HQ and CC show that the N-doped RGO-ZnO modified electrode exhibits a wide linear response range of 2-900 mu M and 2-600 mu M, respectively, with detection limits (S/N = 3) of 10 nM and 10 nM, respectively. The electrode also has good sensitivity, selectivity, high stability and reproducibility. This electrode sensor was further applied to determine HQ and CC in real samples with satisfactory results. The results demonstrate that the N-doped RGO-ZnO is a more robust and advanced carbon electrode material providing a promising platform for photo electrochemical sensors and photo electrocatalytic applications.
机译:本文描述了氮掺杂还原氧化石墨烯-ZnO(N掺杂RGO-ZnO)纳米复合材料的两步合成及其光电化学应用。由这种ZnO-N掺杂的RGO纳米复合材料制成的新型光电化学传感器在同时测定对苯二酚(HQ)和邻苯二酚(CC)方面表现出优于玻璃碳或氮掺杂的还原型GO纳米复合材料的优越性能。循环伏安法(CV)研究表明,在最佳条件下,掺N的RGO-ZnO电极在存在光的情况下在HQ和CC之间显示出高达112 mV的峰值电势分离,这比在光照下的N掺杂RGO电极大相同的条件。具有HQ和CC共存的系统的方波伏安法(SWV)研究表明,掺N的RGO-ZnO修饰电极分别具有2-900μM和2-600μM的宽线性响应范围,检出限(S / N = 3)分别为10 nM和10 nM。该电极还具有良好的灵敏度,选择性,高稳定性和可重复性。将该电极传感器进一步用于测定实际样品中的HQ和CC,结果令人满意。结果表明,N掺杂的RGO-ZnO是一种更坚固和先进的碳电极材料,为光电化学传感器和光电催化应用提供了有希望的平台。

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