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首页> 外文期刊>Electrochimica Acta >CuO nanoparticles decorated nano-dendrite-structured CuBi2O4 for highly sensitive and selective electrochemical detection of glucose
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CuO nanoparticles decorated nano-dendrite-structured CuBi2O4 for highly sensitive and selective electrochemical detection of glucose

机译:CuO纳米粒子装饰纳米树枝状结构Cubi2O4,用于葡萄糖的高敏感和选择性电化学检测

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In this study, a chemically modified electrode, consisting of CuO nanoparticles decorated nano-dendrite structured CuBi2O4 (nanoCuBi(2)O(4)/CuO), was fabricated and its application as an electrocatalyst in catalyzing the oxidation of glucose was investigated. nanoCuBi(2)O(/)CuO was fabricated by firstly electrodepositing BiOI nanosheet array (nanoBiOI) on the flourine-doped tin oxide coated glass substrate, followed by its conversion into nanoCuBi(2)O(4)/CuO via drop-casting an ethanolic Cu2+ solution and follow-up thermal treatment. The degree of conversion of nanoBiOI into nanoCuBi(2)O(4)/CuO and electrocatalytic activites of resultant nanoCuBi(2)O(4)/CuO were controlled by adjusting the dosage of the ethanolic CU2+ precursor solution. Surface morphology, structure, crystal phase, chemical composition, and electrocatalytic properties of the nanoCuBi(2)O(4)/CuO were characterized using scanning electron microscopy, transmission electron microscopy, X-ray diffraction, cyclic voltammetry, linear sweep voltammetry, and chronoamperometry. It was found that both CuO and CuBi2O4 are active in electrocatalyzing the oxidation of glucose, but the porous structure of nanoCuBi(2)O(4)/CuO along with the synergistic catalytic enhancement, exerted by CuBi2O4 and CuO, renders nanoCuBi(2)O(4)/CuO superior electrocatalytic activity than CuO or CuBi2O4 alone. The mechanism of electrocatalytic oxidation of glucose on nanwoCuBi(2)O(4)/CuO is proposed. Finally, the sensing characteristics of nanoCuBi(2)O(4)/CuO was evaluated, and the results indicate nanoCuBiO(4)/CuO is a promising sensing material for the electrochemical detection of glucose. (C) 2017 Elsevier Ltd. All rights reserved.
机译:在该研究中,由CuO纳米颗粒构成的化学改性电极构成纳米树枝状结构Cubi2O4(纳米锰(2)O(4)/ CuO),并研究了作为催化葡萄糖氧化的电催化剂的应用。 nanoCuBi(2)O(/)的CuO是由掺杂的flourine的氧化锡涂覆的玻璃基板上首先电沉积BiOI纳米片阵列(nanoBiOI)制造,随后将其转化为nanoCuBi(2)O(4)/的CuO通过滴铸乙醇Cu2 +溶液和后续热处理。通过调节乙醇化合物Cu2 +前体溶液的剂量来控制纳米烃中纳米烃(2)O(2)/ CuO和电催化活化物的转化程度。使用扫描电子显微镜,透射电子显微镜,X射线衍射,循环伏安,线性扫描伏安法,表征纳米锰(2)O(2)O(4)/ CuO的表面形态,结构,晶相,化学成分和电催化性质和电催化性质,以及计时率。发现CuO和Cubi2O4在电催化葡萄糖的氧化方面是有效的,但是纳米(2)O(4)/ cuO的多孔结构以及协同催化增强,由Cubi2O4和CuO施加,纳米(2)。 O(4)/ CuO优越的电催化活性比CuO或Cubi2O4单独。提出了南瓜(2)o(4)/ cuO葡萄糖电催化氧化机理。最后,评价纳米锰(2)/ cuO的感测特性,结果表明纳米纤维(4)/ CUO是用于葡萄糖的电化学检测的有希望的传感材料。 (c)2017 Elsevier Ltd.保留所有权利。

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