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首页> 外文期刊>Electrochimica Acta >A Comparative Study of Nonenzymatic Electrochemical Glucose Sensors Based on Pt-Pd Nanotube and Nanowire Arrays
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A Comparative Study of Nonenzymatic Electrochemical Glucose Sensors Based on Pt-Pd Nanotube and Nanowire Arrays

机译:基于Pt-Pd纳米管和纳米线阵列的非酶电化学葡萄糖传感器的比较研究

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Facilitating the glucose electro-oxidation reaction is always of great scientific sense due to its wide applications in sensing, catalysis and biofuel cells. On the road to improving the electrocatalysis of glucose, one-dimensional materials mainly including nanowires and nanotubes are commonly proposed because of their fascinating characters, and both of them are reported capable of offering better catalytic performance compared to commercial Pt/C and Pt black catalysts. However, so far it still confuses us that which structure can provide more favorable properties towards the direct electro-oxidation of glucose. Here we carry out a systematically comparative study of nonenzymatic electrochemical sensors based on vertical nanowire and nanotube arrays for glucose detection. By using bimetallic Pt-Pd as a general model, we demonstrate that nanotube arrays, owing to their larger catalytic area and higher catalyst utilization, show higher activity for glucose electro-oxidation and enzyme-free analysis than nanowire arrays. These findings may be helpful for the future design of more efficient catalyst structures for glucose oxidation and other reactions.
机译:由于葡萄糖电氧化反应在传感,催化和生物燃料电池中的广泛应用,促进葡萄糖电氧化反应始终具有很大的科学意义。在改善葡萄糖的电催化作用的道路上,由于其引人入胜的特性,通常提出主要包括纳米线和纳米管的一维材料,并且据报道它们都能够提供比市售Pt / C和Pt黑色催化剂更好的催化性能。 。但是,到目前为止,仍然使我们感到困惑的是,哪种结构可以为葡萄糖的直接电氧化提供更有利的特性。在这里,我们进行了基于垂直纳米线和纳米管阵列的葡萄糖检测的非酶电化学传感器的系统比较研究。通过使用双金属Pt-Pd作为一般模型,我们证明了纳米管阵列由于其更大的催化面积和更高的催化剂利用率,比纳米线阵列显示出更高的葡萄糖电氧化和无酶分析活性。这些发现可能有助于将来设计更有效的用于葡萄糖氧化和其他反应的催化剂结构。

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