Citation: WANG Jin-Fen, BIAN Chao, TONG Jian-Hua, SUN Ji-Zhou, XIA Shan-Hong. Comparison of Mercury-free Microsensors Based on Gold Nanoparticles for Heavy Metals Detection[J]. Chinese Journal of Analytical Chemistry, ;2012, 40(12): 1791-1796. doi: 10.3724/SP.J.1096.2012.20470
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This paper presents two kinds of mercury-free electrochemical microsensors for simultaneous detection of heavy metals, which are L-aspartic acid/L-cysteine/gold nanoparticles (Asp/Cys/GNPs/microelectrode chip) and Sn film/gold nanoparticles modified microelectrode chip (Sn/GNPs/microelectrode chip). Electrochemical analysis of metal ions on Asp/Cys/GNPs/microelectrode chip was investigated by square wave voltammetry under the optimized conditions. The microsensor exhibited wide linear range from 5 μg/L to 2000 μg/L for Cu2+ and Pb2+ ions, with limit of detection of 1 μg/L. In situ tin film deposition was used in detection of heavy metals for the forming of alloy with heavy metals. Electrochemical analysis of metal ions on Sn/GNPs/microelectrode chip was investigated by square wave stripping voltammetry. The Sn/GNPs/microelectrode chip showed high sensitivity to Cu2+, Pb2+ and Zn2+ ions. This microsensor revealed good linear behavior in the examined concentration ranges from 5 to 500 μg/L for Cu2+ and Pb2+, from 10 to 500 μg/L for Zn2+, with a limit of detection of 2 μg/L for Cu2+, 3 μg/L for Pb2+ and 5 μg/L for Zn2+. In addition, metal ions detection method using the two kinds of microsensor are green, simple, reused and compatible with the microfluid chip for on-site analysis.
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Keywords:
- Gold nanoparticles,
- Microelectrode chip,
- Copper,
- Lead,
- Zinc
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[1]
1 Praline J, Guennoc A M, Limousin N, Hallak H, Corcia P. Clin. Neurol. Neurosurg, 2007, 109(10): 880-883
-
[2]
2 Xie F Z, Lin X C, Wu X P, Xie Z H. Talanta, 2008, 74(4): 836-843
-
[3]
3 Karami H, Mousavi M F, Yamini Y, Shamsipur M. Anal. Chim. Acta, 2004, 509(1): 89-94
-
[4]
4 LU Mei-Bin, WANG Bu-Jun, LI Jing-Hai, LI Wei-Xi, YANG Xiu-Lan, SONG Jing-Kei. Spectroscopy and Spectral Analysis, 2012, 32(8): 2234-2237
-
[5]
陆美斌, 王步军, 李静海, 李为喜, 杨秀兰, 宋敬可. 光谱学与光谱分析, 2012, 32(8): 2234-2237
-
[6]
5 LIU De-Meng, JIN Yan, JIN Qing-Hui, ZHAO Jian-Long. Chinese J. Anal. Chem., 2011, 39(11): 1748-1752
-
[7]
刘德盟, 金 妍, 金庆辉, 赵建龙. 分析化学, 2011, 39(11): 1748-1752
-
[8]
6 Lin M, Cho M S, Choe W S, Lee Y. Biosens. Bioelectron., 2009, 25(1): 28-33
-
[9]
7 Rodrigues J A, Rodrigues C M, Almeida P J, Valente I M, Gon-alves L M, Compton R G, Barros A A. Anal. Chim. Acta, 2011, 701(2): 152-156
-
[10]
8 Sherigara B S, Shivaraj Y, Mascarenhas R J, Satpati A K. Electrochim. Acta, 2007, 52(9): 3137-3142
-
[11]
9 Yang W R, Gooding J J, Hibbert D B. Analyst, 2001, 126 (9): 1573-1577
-
[12]
10 Yang W R, Jaramillo D, Gooding J J, Hibbert D B, Zhang R, Willett G D, Fisher K J. Chem. Commun., 2001, 19 (9): 1982-1983
-
[13]
11 Shervedani R K, Mozaffari S A. Anal. Chem., 2006, 78(14): 4957-4963
-
[14]
12 GONG Wei-Lei, DU Xiao-Yan, WANG Shu-Ran, JIANG Xian-Chen, SUN Qian. Chinese J. Anal. Chem., 2008, 36(2): 177-181
-
[15]
公维磊, 杜晓燕, 王舒然, 姜宪尘, 孙 倩. 分析化学, 2008, 36(2): 177-181
-
[16]
13 LI Dong-Yue, JIA Jian-Bo, WANG Jian-Guo. Chinese J. Anal. Chem., 2012, 40(2): 321-327
-
[17]
李冬月, 郏建波, 王建国. 分析化学, 2012, 40(2): 321-327
-
[18]
14 Svobodova-Tesarova E, Baldrianova L, Stoces M, Svancara I, Vytras K, Hocevar S B, Ogorevc B. Electrochim. Acta, 2011, 56(19): 6673-6677
-
[19]
15 Czop E, Economou A, Bobrowski A. Electrochim. Acta, 2011, 56(5): 2206-2212
-
[20]
16 Sakai N, Fujiwara Y, Arai M, Yu K, Tatsuma T. J. Electroanal. Chem., 2009, 628(1-2): 7-15
-
[21]
17 Bard A J, Faulkner L R. Electrochemical Methods: Fundamentals and Applications. 2nd ed., New York: Wiley Interscience, 2001: 231
-
[22]
18 Enviromental Quality Standards for Surface Water, GB3838-2002
-
[23]
地表水环境质量标准, GB3838-2002
-
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