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Preparation of Cuprous Oxide Mesoporous Spheres with Different Pore Sizes for Non-Enzymatic Glucose Detection

机译:用于非酶法葡萄糖检测的具有不同孔径的氧化亚铜介孔球的制备

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摘要

Mass transfer plays a significant role in a sensor’s performance, because the substrate can be detected only when it contacts with the active catalytic surface. In this work, cuprous oxide mesoporous nanospheres (Cu2O MPNS) with different pore size distributions are fabricated and applied as electrocatalysts for glucose detection. The small pore Cu2O (SP-Cu2O, mean pore size of 5.3 nm) and large pore Cu2O (LP-Cu2O, mean pore size of 16.4 nm) spheres are prepared by the template method and an etching treatment. The obtained two kinds of Cu2O MPNS exhibit high porosity with a similar specific surface area of 61.2 and 63.4 (m2·g−1), respectively. The prepared Cu2O MPNS are used to construct an electrochemical non-enzymatic glucose sensor. The results show that the LP-Cu2O exhibits better performance than SP-Cu2O, which illustrates that the internal diffusion takes a great impact on the performance of the sensor. The LP-Cu2O modified electrode possesses a high and reproducible sensitivity of 2116.9 μA mM−1·cm−2 at the applied potential of 0.6 V with a wide detection range of 0.003–7.8 mM and a low detection limit of 0.42 μM.
机译:传质在传感器的性能中起着重要作用,因为只有在底物与活性催化表面接触时才能对其进行检测。在这项工作中,制备了具有不同孔径分布的氧化亚铜介孔纳米球(Cu2O MPNS),并将其用作葡萄糖检测的电催化剂。通过模板法和蚀刻处理制备小孔Cu 2 O(SP-Cu 2 O,平均孔径为5.3 nm)和大孔Cu 2 O(LP-Cu 2 O,平均孔径为16.4 nm)球。所得的两种Cu 2 O MPNS具有高孔隙率,比表面积分别为61.2和63.4(m 2 ·g -1 )。制备的Cu2O MPNS用于构建电化学非酶葡萄糖传感器。结果表明,LP-Cu2O的性能优于SP-Cu2O,这说明内部扩散对传感器的性能影响很大。 LP-Cu2O修饰电极在0.6 V的施加电势下具有2116.9μAmM -1 ·cm -2 的高可重复灵敏度,检测范围为0.003 –7.8 mM和0.42μM的低检测限。

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