Citation: HAN Nan-Nan, WANG Hui, LI Na, ZHOU Jian-Zhang, LIN Zhong-Hua, WU Di, WAN Guo-Jiang. Electrochemical Behavior of Redox Proteins on ZnO Nanorod-Modified Electrodes Prepared by Electrodeposition[J]. Acta Physico-Chimica Sinica, ;2011, 27(02): 468-472. doi: 10.3866/PKU.WHXB20110210
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We successfully prepared ZnO nanorod-modified Au (ZnO nanorod/Au) electrodes using one-step cathodic electrodeposition. Scanning electron microscopy (SEM) and X-ray diffraction (XRD) were used to characterize the morphology and crystal phase of the ZnO nanorods. The data showed that the ZnO nanorods were wurtzite type crystals with a hexa nal rod shape and a diameter of about 100 nm and that the ZnO nanorods were arranged well on the surface of electrodes. These ZnO nanorod-modified electrodes were able to detect direct electron transfer from cytochrome c (cyt c). Cyclic voltammograms showed that the direct electron transfer of cyt c with heme iron in different valence states was easily achieved by the ZnO nanorod/Au electrode. Data of amperometric responses demonstrated that a linear amperometric response to hydrogen peroxide was observed on the ZnO nanorod/Au electrodes after adsorbing cyt c.
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Keywords:
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ZnO nanorod
, - Electrodeposition,
- Redox protein,
- Cytochrome c
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[1]
(1) Ghindilis, A. L.; Atanasov, P.;Wilkins, E. Electroanal. 1997, 9, 61.
-
[2]
(2) Feng, J. J.; Zhao, G.; Xu, J. J.; Chen, H. Y. Anal. Biochem. 2005, 42, 280.
-
[3]
(3) Chen, S. M.; Chen, S. V. Electrochim. Acta, 2003, 48, 513.
-
[4]
(4) Liang, M. S.; Bai, Y.; Liu, M.; Zheng,W. J. Acta Phys. -Chim. Sin. 2009, 25, 457.
-
[5]
[梁敏思, 白燕, 刘敏, 郑文杰. 物理化 学报, 2009, 25, 457.]
-
[6]
(5) Zhao, G. C.; Yin, Z. Z.; Zhang, L.;Wei, X.W. Electrochem. Commun. 2005, 7, 256.
-
[7]
(6) Ma, G. X.; Zhong, Q. D.; Lu, X. G.; Lu, T. H. Acta Phys. -Chim. Sin. 2009, 25, 2061.
-
[8]
[马国仙, 钟庆东, 鲁雄刚, 陆天虹. 物理 学学报, 2009, 25, 2061.]
-
[9]
(7) Sun, D. M.; Cai, C. X.; Li, X. G.; Xing,W.; Lu, T. H. J. Electroanal. Chem. 2004, 566, 415.
-
[10]
(8) Zhang, Q. F.; Dandeneau, C. S.; Zhou, X. Y.; Cao, G. Z. Adv. Mater. 2009, 21, 4087.
-
[11]
(9) Sun, H.; Zhang, Q. F.;Wu, J. L. Nanotechnol. 2006, 17, 2271.
-
[12]
(10) Huang, M. H.; Mao, S.; Feick, H.; Yan, H. Q.;Wu, Y. Y.; Kind, H.;Weber, E.; Russo, R.; Yang, P. D. Science 2001, 292, 1897.
-
[13]
(11) Liu, J. P.; Guo, C. X.; Li, C. M.; Li, Y. Y.; Chi, Q. B.; Huang, X. T.; Liao, L.; Yu, T. Electrochem. Commun. 2009, 11, 202.
-
[14]
(12) Li, Y. F.; Liu, Z. M.; Liu, Y. L.; Yang, Y. H.; Shen, G. L.; Yu, R. . Anal. Biochem. 2006, 349, 33.
-
[15]
(13) Umar, A.; Rahman, M. M.; Vaseem, M.; Hahn, Y. B. lectrochem. Commun. 2009, 11, 118.
-
[16]
(14) Zhang, F. F.;Wang, X. L.; Ai, S. Y.; Sun, Z. D.;Wan, Q.; Zhu, Z. Q.; Xian, Y. Z.; Jin, L. T.; Yamamoto, K. Anal. Chim. Acta 2004, 519, 155.
-
[17]
(15) Zhao, Z.W.; Lei,W.; Zhang, X. B.;Wang, B. P.; Jiang, H. L. Sensors 2010, 10, 1216.
-
[18]
(16) Lu, X. B.; Zhang, H.; Ni, Y.W.; Zhang, Q.; Chen, J. P. Biosens. Bioelectron. 2008, 24, 93.
-
[19]
(17) Kumar, S. A.; Chen, S. M. Anal. Lett. 2008, 41, 141.
-
[20]
(18) Zhu, X. L.; Yuri, I.; Gan, X.; Suzuki, I.; Li, G. X. Biosens. Bioelectron. 2007, 22, 1600.
-
[21]
(19) Rui, Q.; Komori, K.; Tian, Y.; Liu, H.; Luo, Y.; Sakai, Y. Anal. Chim. Acta 2010, 670, 57.
-
[22]
(20) Willander, M.; Nur, O.; Zhao, Q. X.; Yang, L. L.; Lorenz, M.; ao, B. Q.; Perez, J. Z.; Czekalla, C.; Zimmermann, G.; rundmann, M.; Bakin, A.; Behrends, A.; Al-Suleiman, M.; l-Shaer, A.; Mofor, A. C.; Postels, B.;Waag, A.; Boukos, N.; ravlos, A.; Kwack, H. S.; Guinard, J.; Dang, D. L. Nanotechnol. 2009, 20, 332001.
-
[23]
(21) Guo, H. H.; Zhou, J. Z.; Lin, Z. H. Electrochem. Commun. 2008, 10, 146.
-
[24]
(22) Li, Q.; Kumar, V.; Li, Y.; Zhang, H. T.; Marks, T. J.; Chang, R. P. H. Chem. Mater. 2005, 17, 1001.
-
[25]
(23) Cui, J. B.; Gibson, U. J. J. Phys. Chem. B 2005, 109, 22074.
-
[26]
(24) Zhang, Q. B.; Guo, H. H.; Feng, Z. F.; Lin, L. L.; Zhou, J. Z.; in, Z. H. Electrochim. Acta 2010, 55, 4889.
-
[27]
(25) Szucs, A.; Hitchens, G. D.; Bockris, J. O. M. Electrochim. Acta 1992, 37, 403.
-
[28]
(26) Wang, K. Bioinoganic Chemistry; Tsinghua University Press: eijing, 1988; pp 121-131.
-
[29]
[王夔. 生物无机化学. 北京: 华大学出版社, 1988: 121-131.]
-
[30]
(27) Prakash, P. A.; Yogeswaran, U.; Chen, S. M. Sensors 2009, 9, 821.
-
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