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Rational design of binder-free noble metal/metal oxide arrays with nanocauliflower structure for wide linear range nonenzymatic glucose detection

机译:用于宽线性范围非酶法葡萄糖检测的具有纳米花椰菜结构的无粘合剂贵金属/金属氧化物阵列的合理设计

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摘要

One-dimensional nanocomposites of metal-oxide and noble metal were expected to present superior performance for nonenzymatic glucose detection due to its good conductivity and high catalytic activity inherited from noble metal and metal oxide respectively. As a proof of concept, we synthesized gold and copper oxide (Au/CuO) composite with unique one-dimensional nanocauliflowers structure. Due to the nature of the synthesis method, no any foreign binder was needed in keeping either Au or CuO in place. To the best of our knowledge, this is the first attempt in combining metal oxide and noble metal in a binder-free style for fabricating nonenzymatic glucose sensor. The Au/CuO nanocauliflowers with large electrochemical active surface and high electrolyte contact area would promise a wide linear range and high sensitive detection of glucose with good stability and reproducibility due to its good electrical conductivity of Au and high electrocatalytic activity of CuO.
机译:金属氧化物和贵金属的一维纳米复合材料因其良好的电导率和分别继承自贵金属和金属氧化物的高催化活性,有望在非酶法​​葡萄糖检测中显示出优异的性能。作为概念的证明,我们合成了具有独特的一维纳米花椰菜结构的金和氧化铜(Au / CuO)复合材料。由于合成方法的性质,不需要任何外来粘合剂将Au或CuO保持在适当的位置。就我们所知,这是首次尝试以无粘合剂的形式将金属氧化物和贵金属结合起来制造非酶促葡萄糖传感器。具有良好的电化学活性表面和高电解质接触面积的Au / CuO纳米花椰菜由于具有良好的Au导电性和CuO的高电催化活性,因此有望实现宽线性范围和对葡萄糖的高灵敏检测,具有良好的稳定性和可重复性。

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