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Vertical copper oxide nanowire arrays attached three-dimensional macroporous framework as a self-supported sensor for sensitive hydrogen peroxide detection

机译:垂直氧化铜氧化物纳米线阵列连接了三维大孔框架作为自支撑传感器,用于敏感过氧化氢检测

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摘要

A hierarchical nanostructure consisting of uniform copper oxide nanowires vertically grown on three-dimensional copper framework (CuO NWs/3D-Cu foam) was prepared by a two-step synthetic process. The uniform CuO NWs anchored onto the 3D foam exhibited outstanding electrocatalytic activity towards hydrogen peroxide reduction due to the unique one-dimensional direction with its excellent catalytic activity and large surface area of 3D substrate, which enhanced electroactive sites and charge conductivity. As a result, a wide linear detection range of 1 mu M-1 mM, good sensitivity of 8.87 mu A/(mM (s) over dot cm(2)), low detection limit of 0.98 mu M, and rapid response time of 5 s to hydrogen peroxide were achieved under a working potential of -0.4 V in phosphate buffer solution (pH of 7.4). In addition, the CuO NWs/3D-Cu foam material showed excellent selectivity to hydrogen peroxide and good resistance against poisonous interferents, including ascorbic acid, dopamine, urea, uric acid, and potassium chloride. Furthermore, the CuO NWs/3D-Cu foam presented good reproducibility, stability, and accurate detection for hydrogen peroxide in real sample; therefore, it may be considered to be a potential free-standing hydrogen peroxide sensor in practical analysis applications. (C) 2019 Production and hosting by Elsevier B.V. on behalf of King Saud University.
机译:通过两步合成工艺制备由垂直生长在三维铜骨架(CuONWS / 3D-Cu泡沫)上垂直生长的均匀氧化氧化物纳米线组成的分层纳米结构。锚定到3D泡沫上的均匀CuOnWs表现出由于独特的一维方向具有优异的一维方向,其具有优异的催化活性和3D基板的大表面积,其增强了电活性部位和电荷导电性,其朝向过氧化氢致氧化氢。结果,宽线性检测范围为1μm-1mm,良好的敏感性为8.87μ/(mm(s)×cm(2)),低检测限为0.98 mu m,快速响应时间在磷酸盐缓冲溶液(pH为7.4)的磷酸盐缓冲溶液(pH)的工作电位下实现过氧化氢。此外,CuO NWS / 3D-Cu泡沫材料对过氧化氢和良好的抗坏血酸,多巴胺,尿素,尿酸和氯化钾具有优异的过氧化氢和良好抗性的选择性。此外,CuO NWS / 3D-Cu泡沫呈现出真实样品中过氧化氢的良好再现性,稳定性和准确检测;因此,在实际分析应用中,可以认为它是一种潜在的独立式过氧化氢传感器。 (c)2019年Elsevier B.V的生产和托管。代表沙特大学国王。

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