Polythiophene/ZnO nanocomposite-modified glassy carbon electrode as efficient electrochemical hydrazine sensor

被引:62
|
作者
Faisal, M. [1 ]
Harraz, Farid A. [1 ,3 ]
Al-Salami, A. E. [2 ]
Al-Sayari, S. A. [1 ,4 ]
Al-Hajry, A. [1 ,5 ]
Al-Assiri, M. S. [1 ,5 ]
机构
[1] Najran Univ, Adv Mat & Nanores Ctr, Promising Ctr Sensors & Elect Devices, POB 1988, Najran 11001, Saudi Arabia
[2] King Khalid Univ, Fac Sci, Dept Phys, POB 9004, Abha 61413, Saudi Arabia
[3] CMRDI, Nanomat & Nanotechnol Dept, PO 87 Helwan, Cairo 11421, Egypt
[4] Najran Univ, Fac Sci & Arts Sharurah, Dept Chem, Najran, Saudi Arabia
[5] Najran Univ, Fac Sci & Arts, Dept Phys, Najran, Saudi Arabia
关键词
ZnO; Polythiophene; Electrochemical; Hydrazine sensor; Amperometry; CHEMICAL SENSOR; TOXIC HYDRAZINE; GAS SENSITIVITY; ZNO; NANOPARTICLES; FABRICATION; NANOSTRUCTURES; NANOSHEETS; ARRAYS;
D O I
10.1016/j.matchemphys.2018.04.085
中图分类号
T [工业技术];
学科分类号
08 ;
摘要
An electrochemical approach was developed for rapid and effective detection of hydrazine using polythiophene (PTh)/ZnO nanocomposite modified glassy carbon electrode (GCE). The PTh/ZnO nano composite was synthesized by a modified sol-gel procedure using F127 structure directing mediator, followed by a chemical oxidative polymerization process. Cyclic voltammetry measurements using the PTh/ZnO modified GCEs revealed remarkable sensing response toward hydrazine compared to either bare GCE or pure ZnO, with diffusion-controlled electrode kinetics. Effective amperometric (i-t) response was achieved for the current modified electrodes, yielding a very rapid response time of <5s with a noticeable sensitivity of 1.22 A mu A mu M(-1)cm(-2) and a correlation coefficient (R-2= 0.9983) within a wide linear range of hydrazine concentration from 0.5 up to 48 mu M. The limit of detection (LOD) calculated from the electrochemical measurements was found to be 0.207 mu M at (S/N= 3), which is well below several earlier reports. Most significantly, the PTh/ZnO modified electrodes showed good operational stability, repeatability and reproducibility and allowed sensitive detection of hydrazine in the presence of several common interfering molecules. The results presented here provide real progress towards further realization of fabricating efficient hydrazine chemical sensors. (C) 2018 Elsevier B.V. All rights reserved.
引用
收藏
页码:126 / 134
页数:9
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