Gold nanoparticle-modified graphite pencil electrode for the high-sensitivity detection of hydrazine

被引:146
作者
Aziz, Md Abdul [1 ]
Kawde, Abdel-Nasser [1 ,2 ]
机构
[1] King Fahd Univ Petr & Minerals, Dept Chem, Dhahran 31261, Saudi Arabia
[2] Assiut Univ, Dept Chem, Fac Sci, Assiut 71516, Egypt
关键词
Gold nanoparticles; Graphite pencil electrode; Hydrazine; Square wave voltammetry; Sensor; ELECTROCATALYTIC OXIDATION; AU NANOPARTICLES; ELECTROCHEMICAL DETECTION; OXIDE NANOPARTICLES; CARBON NANOTUBES; SENSOR; DNA; ELECTROOXIDATION; DEPOSITION; COMPOSITE;
D O I
10.1016/j.talanta.2013.04.038
中图分类号
O65 [分析化学];
学科分类号
070302 ; 081704 ;
摘要
A novel gold nanoparticle-modified graphite pencil electrode (AuNP-GPE) is prepared just by immersing a bare GPE in AuNP solution, followed by heating for 15 min. The bare and modified GPEs are characterized by FE-SEM imaging and cyclic voltammetry. The AuNP-GPEs showed excellent electrocatalytic activities with respect to hydrazine oxidation, with good reproducibility. To reduce the quantification and detection limits, and increase the hydrazine sensitivity, the pH and square wave voltammetry parameters are optimized. A square wave voltammetry study as a function of the hydrazine concentration showed that the AuNP-GPE detector's quantification limit was 100 nmol L-1 hydrazine, much lower than the value obtained using amperometry (10 mu mol L-1). The limits of detection (at 30 sigma) for hydrazine sensing at AuNP-GPEs using square wave voltammetry and amperometry were 42 nmol L-1 and 3.07 mu mol L-1. Finally, the modified electrode was used to determine the hydrazine concentration in drinking water, and satisfactory results are obtained. This simple, rapid, low-cost method for fabricating a modified electrode is an attractive approach to the development of new sensors. (C) 2013 Elsevier B.V. All rights reserved.
引用
收藏
页码:214 / 221
页数:8
相关论文
共 54 条
[31]   Nanomolar determination of hydrazine by TiO2 nanoparticles modified carbon paste electrode [J].
Mazloum-Ardakani, Mohammad ;
Rajabi, H. ;
Mirjalili, B. B. F. ;
Beitollahi, H. ;
Akbari, A. .
JOURNAL OF SOLID STATE ELECTROCHEMISTRY, 2010, 14 (12) :2285-2292
[32]   Well-Crystalline α-Fe2O3 Nanoparticles for Hydrazine Chemical Sensor Application [J].
Mehta, S. K. ;
Singh, Kulvinder ;
Umar, Ahmad ;
Chaudhary, G. R. ;
Singh, Sukhjinder .
SCIENCE OF ADVANCED MATERIALS, 2011, 3 (06) :962-967
[33]   Tin oxide nanoparticles-polymer modified single-use sensors for electrochemical monitoring of label-free DNA hybridization [J].
Muti, Mihrican ;
Kuralay, Filiz ;
Erdem, Arzum ;
Abaci, Serdar ;
Yumak, Tugrul ;
Sinag, Ali .
TALANTA, 2010, 82 (05) :1680-1686
[34]   Preparation of selective and sensitive electrochemically treated pencil graphite electrodes for the determination of uric acid in urine and blood serum [J].
Ozcan, Ali ;
Sahin, Yuecel .
BIOSENSORS & BIOELECTRONICS, 2010, 25 (11) :2497-2502
[35]   Principles and Techniques of Electroanalytical Stripping Methods for Pharmaceutically Active Compounds in Dosage Forms and Biological Samples [J].
Ozkan, Sibel A. .
CURRENT PHARMACEUTICAL ANALYSIS, 2009, 5 (02) :127-143
[36]   Facile Synthesis of Pd Nanoparticle Modified Carbon Black for Electroanalysis: Application to the Detection of Hydrazine [J].
Panchompoo, Janjira ;
Aldous, Leigh ;
Downing, Clive ;
Crossley, Alison ;
Compton, Richard G. .
ELECTROANALYSIS, 2011, 23 (07) :1568-1578
[37]   Selective deposition of Pt on Au nanoparticles using hydrogen presorbed into Au nanoparticles during NaBH4 treatment [J].
Patra, Srikanta ;
Das, Jagotamoy ;
Yang, Haesik .
ELECTROCHIMICA ACTA, 2009, 54 (12) :3441-3445
[38]   Nucleation and growth of Pd nanoparticles during electrocrystallization on pencil graphite [J].
Rezaei, Milad ;
Tabaian, Seyed Hadi ;
Haghshenas, Davoud Fatmehsari .
ELECTROCHIMICA ACTA, 2012, 59 :360-366
[39]   Plasmonic-Based Imaging of Local Square Wave Voltammetry [J].
Shan, Xiaonan ;
Wang, Shaopeng ;
Wang, Wei ;
Tao, Nongjian .
ANALYTICAL CHEMISTRY, 2011, 83 (19) :7394-7399
[40]   Electrocatalytic Oxidation and Determination of Hydrazine at an AuCu Nanoparticles - Graphene - Ionic Liquid Composite Film Coated Glassy Carbon Electrode [J].
Shang, Lei ;
Zhao, Faqiong ;
Zeng, Baizhao .
ELECTROANALYSIS, 2012, 24 (12) :2380-2386