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镍钴层状双氢氧化物纳米片阵列负载于泡沫铜上的金纳米粒子作为一种高灵敏度的电化学非酶葡萄糖传感器。

NiCo-LDH nanoflake arrays-supported Au nanoparticles on copper foam as a highly sensitive electrochemical non-enzymatic glucose sensor.

机构信息

College of Pharmaceutical and Materials Engineering, Taizhou University, Taizhou 318000, China.

College of Pharmaceutical and Materials Engineering, Taizhou University, Taizhou 318000, China.

出版信息

Anal Chim Acta. 2021 Sep 8;1177:338787. doi: 10.1016/j.aca.2021.338787. Epub 2021 Jun 22.

Abstract

The detection of glucose in human blood is of great importance in the diagnosis and prevention of diabetes. In this work, we fabricated a novel electrochemical non-enzymatic glucose sensor, NiCo-LDH nanoflake arrays-supported Au nanoparticles on copper foam (NiCo-LDH@ Au/Cu) by galvanic replacement and electrodeposition methods. Owing to the synergistic effect of three-dimensional (3D) architecture of Cu foam, high electrocatalytic activity of Au nanoparticles and NiCo-LDH nanoflake arrays, the NiCo-LDH@Au/Cu electrode exhibits excellent electrocatalytic ability for glucose oxidation in NaOH solution. Under optimized conditions, the NiCo-LDH@Au/Cu electrode shows excellent activity with a linear range from 0.5 to 3000 μM at the potential of 0.50 V (vs. Ag/AgCl), a low detection limit of 0.23 μM (S/N = 3), an ultra-prompt response time of 0.5 s, and a high sensitivity of 23100 μA mM cm, as well as good selectivity and stability. Furthermore, the as-fabricated non-enzymatic glucose sensor was successfully applied to the glucose detection in human serum as a promising candidate in the development of electrochemical non-enzymatic glucose sensor.

摘要

在糖尿病的诊断和预防中,检测人体血液中的葡萄糖至关重要。在这项工作中,我们通过电置换和电沉积方法制备了一种新型电化学非酶葡萄糖传感器,即泡沫铜负载 NiCo-LDH 纳米片阵列修饰的金纳米粒子(NiCo-LDH@Au/Cu)。由于泡沫铜的三维(3D)结构、金纳米粒子和 NiCo-LDH 纳米片阵列的高电催化活性的协同作用,NiCo-LDH@Au/Cu 电极在 NaOH 溶液中对葡萄糖氧化表现出优异的电催化能力。在优化条件下,NiCo-LDH@Au/Cu 电极在 0.50 V(相对于 Ag/AgCl)的电位下表现出优异的活性,线性范围为 0.5 至 3000 μM,检测限低至 0.23 μM(S/N = 3),超快速响应时间为 0.5 s,灵敏度高,为 23100 μA mM cm,具有良好的选择性和稳定性。此外,所制备的非酶葡萄糖传感器成功应用于人血清中葡萄糖的检测,有望成为电化学非酶葡萄糖传感器的发展方向。

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