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用于高灵敏度检测肼的金纳米粒子/碳纳米管-还原氧化石墨烯电化学传感器的制备与表征

Preparation and characterization of AuNPs/CNTs-ErGO electrochemical sensors for highly sensitive detection of hydrazine.

作者信息

Zhao Zhenting, Sun Yongjiao, Li Pengwei, Zhang Wendong, Lian Kun, Hu Jie, Chen Yong

机构信息

Micro and Nano System Research Center, Key Lab of Advanced Transducers and Intelligent Control System (Ministry of Education) & College of Information Engineering, Taiyuan University of Technology, Taiyuan 030024, Shanxi, China.

Micro and Nano System Research Center, Key Lab of Advanced Transducers and Intelligent Control System (Ministry of Education) & College of Information Engineering, Taiyuan University of Technology, Taiyuan 030024, Shanxi, China.

出版信息

Talanta. 2016 Sep 1;158:283-291. doi: 10.1016/j.talanta.2016.05.065. Epub 2016 May 25.

Abstract

A highly sensitive electrochemical sensor of hydrazine has been fabricated by Au nanoparticles (AuNPs) coating of carbon nanotubes-electrochemical reduced graphene oxide composite film (CNTs-ErGO) on glassy carbon electrode (GCE). Cyclic voltammetry and potential amperometry have been used to investigate the electrochemical properties of the fabricated sensors for hydrazine detection. The performances of the sensors were optimized by varying the CNTs to ErGO ratio and the quantity of Au nanoparticles. The results show that under optimal conditions, a sensitivity of 9.73μAμM(-1)cm(-2), a short response time of 3s, and a low detection limit of 0.065μM could be achieved with a linear concentration response range from 0.3μM to 319μM. The enhanced electrochemical performances could be attributed to the synergistic effect between AuNPs and CNTs-ErGO film and the outstanding catalytic effect of the Au nanoparticles. Finally, the sensor was successfully used to analyse the tap water, showing high potential for practical applications.

摘要

通过在玻碳电极(GCE)上用金纳米颗粒(AuNPs)包覆碳纳米管 - 电化学还原氧化石墨烯复合膜(CNTs - ErGO)制备了一种高灵敏度的肼电化学传感器。采用循环伏安法和电位安培法研究了所制备传感器用于肼检测的电化学性质。通过改变碳纳米管与氧化石墨烯的比例以及金纳米颗粒的量对传感器性能进行了优化。结果表明,在最佳条件下,可实现9.73μAμM⁻¹cm⁻²的灵敏度、3秒的短响应时间以及0.065μM的低检测限,线性浓度响应范围为0.3μM至319μM。电化学性能的增强可归因于金纳米颗粒与碳纳米管 - 氧化石墨烯膜之间的协同效应以及金纳米颗粒出色的催化作用。最后,该传感器成功用于分析自来水,显示出很高的实际应用潜力。

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