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一步法制备 Ni 纳米颗粒修饰的石墨烯-金刚石杂化电极用于电化学葡萄糖检测。

Single-Step Formation of Ni Nanoparticle-Modified Graphene-Diamond Hybrid Electrodes for Electrochemical Glucose Detection.

机构信息

MOE Key Laboratory for Non-Equilibrium Synthesis and Modulation of Condensed Matter, Xi'an Jiaotong University, Xi'an 710049, China.

Key Laboratory of Marine Materials and Related Technologies, Zhejiang Key Laboratory of Marine Materials and Protective Technologies, Ningbo Institute of Materials Technology and Engineering (NIMTE), Chinese Academy of Sciences, Ningbo 315201, China.

出版信息

Sensors (Basel). 2019 Jul 5;19(13):2979. doi: 10.3390/s19132979.

Abstract

The development of accurate, reliable devices for glucose detection has drawn much attention from the scientific community over the past few years. Here, we report a single-step method to fabricate Ni nanoparticle-modified graphene-diamond hybrid electrodes via a catalytic thermal treatment, by which the graphene layers are directly grown on the diamond surface using Ni thin film as a catalyst, meanwhile, Ni nanoparticles are formed in situ on the graphene surface due to dewetting behavior. The good interface between the Ni nanoparticles and the graphene guarantees efficient charge transfer during electrochemical detection. The fabricated electrodes exhibit good glucose sensing performance with a low detection limit of 2 μM and a linear detection range between 2 μM-1 mM. In addition, this sensor shows great selectivity, suggesting potential applications for sensitive and accurate monitoring of glucose in human blood.

摘要

在过去的几年中,开发准确、可靠的葡萄糖检测设备引起了科学界的广泛关注。在这里,我们报告了一种通过催化热处理一步制备 Ni 纳米粒子修饰的石墨烯-金刚石杂化电极的方法,其中使用 Ni 薄膜作为催化剂直接在金刚石表面生长石墨烯层,同时由于去湿行为,Ni 纳米粒子原位形成在石墨烯表面。Ni 纳米粒子和石墨烯之间的良好界面保证了电化学检测过程中的有效电荷转移。所制备的电极表现出良好的葡萄糖传感性能,检测限低至 2 μM,线性检测范围在 2 μM-1 mM 之间。此外,该传感器具有出色的选择性,表明其在人体血液中葡萄糖的灵敏和准确监测方面具有潜在应用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/e0a3/6650927/9f73c4835b81/sensors-19-02979-g001.jpg

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