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Cu@C composite nanotube array and its application as an enzyme-free glucose sensor

机译:Cu @ C复合纳米管阵列及其在无酶葡萄糖传感器中的应用

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摘要

We report a novel hydrothermal method for the synthesis of a Cu@C nanotube array on a centimeter-scale substrate for the first time. In this hydrothermal reaction process, employing the carbon coated ZnO nanorod array as an inexpensive and partially sacrificial template, along with the ZnO dissolving in the alkaline atmosphere, the formed Cu particles deposit and grow on the carbon surface gradually. Importantly, the carbon shell of the template is not only essential to the preservation of the array configuration, but also makes a significant contribution to the final nanostructure. Such a method provides a morphology-reservation transformation when various shaped carbon-containing templates are adopted. Moreover, this designed Cu@C array has been demonstrated as an excellent electrode material for an enzyme-free glucose sensor in terms of sensitivity (1200νAmM~(- 1)cm~(- 2)) and significantly lower applied potential (-0.2V). Our results present the first preparation of the Cu@C composite nanotube array and may open up an opportunity for rational design of advanced electrode materials for enzyme-free glucose sensors.
机译:我们首次报道了一种新型的水热方法,用于在厘米级基底上合成Cu @ C纳米管阵列。在该水热反应过程中,将碳包覆的ZnO纳米棒阵列作为廉价且部分牺牲的模板,并将ZnO溶解在碱性气氛中,形成的Cu颗粒逐渐沉积并在碳表面上生长。重要的是,模板的碳壳不仅对保持阵列结构至关重要,而且对最终的纳米结构也有重要作用。当采用各种形状的含碳模板时,这种方法提供了形态保留的转变。此外,就灵敏度(1200νAmM〜(-1)cm〜(-2))和显着降低的施加电势(-0.2V)而言,这种设计的Cu @ C阵列已被证明是一种无酶葡萄糖传感器的极佳电极材料。 )。我们的结果提出了Cu @ C复合纳米管阵列的首次制备,并可能为无酶葡萄糖传感器的先进电极材料的合理设计提供机会。

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