New Preparative Method of Zinc Oxide Nanofibers Grafted the Expanded Graphite

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Abstract:

A simple method was developed for the preparation of zinc oxide (ZnO) nanofibers grafted on the expanded graphite(EG) under routine conditions. The synthesized materials were characterized by infrared spectroscopy (IR), scanning electron microscopy (SEM) and X-ray diffractometer (XRD). The results show that the ZnO nanofibers, with a diameter of 50-150 nm, were randomly deposited on the expanded graphite.

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Advanced Materials Research (Volumes 356-360)

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480-483

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October 2011

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© 2012 Trans Tech Publications Ltd. All Rights Reserved

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[1] Y. Li, W. Xie, X. Hu, et al. Langmuir. Vol. 26 (2010) 591-597. C. F. Dee, Ishaq Ahmad, Yan Long, Zhou Xingtai, Burhanuddin Yeop Majlis: NANO: Brief Reports and Reviews. Vol. 6 (2011): 1-6

Google Scholar

[2] G. Xue, H. H. Liu, Q. Y. Chen, C. Hills, M. Tyrer, F. Innocent: J. Hazardous Materials. Vol. 186 (2011) 765–772.

Google Scholar

[3] Lee C. et al. Science. Vol. 321:385-388, 2008.

Google Scholar

[4] S. Stankovich, et al. Nature. Vol. 442:282-286, 2006.

Google Scholar

[5] J. C. Meye,r et al. Nature. Vol. 446:60-63, 2007.

Google Scholar

[6] J. G. Zhao, Q. Q .Guo, J. L. Shi, et al. Carbon. 47 (2009) 1747-1751.

Google Scholar

[7] J. H. Li, H. F. Da, Q. Liu, et al. Mater Lett. 60 (2006) 3927-3930.

Google Scholar

[8] C. Xu, X. Wang and J. W. Zhu: J. Phys. Chem. C. 112: 19841-19845, 2008.

Google Scholar

[9] G. M. Scheuermann, et al. J. Am. Chem. Soc. 131:8262-8270, 2009.

Google Scholar

[10] R. Muszynski, B. Seger and P. V. Kamat: J. Phys. Chem. C. 112:5263-5266, 2008.

Google Scholar

[11] C.W. Cheng, G. Y. Xu, H. Q. Zhang, Y. Luo: Materials Letters. 62 (2008) 1617-1620.

Google Scholar

[12] C. F.Wan, H. R. Tan, S. M. Jin, et al. Mater. Sci. Eng. B .150 (2008) 203-207.

Google Scholar

[13] A. Azam, F. Ahmed, N. Arshi. J. Alloy: Compd. 496 (2010) 399-402.

Google Scholar

[14] C. S. Chen, X. H. Chen, B. Yi, T. G. Liu, et al. Acta. Mater. 54 (2006) 5401-5407.

Google Scholar

[15] H. Li, X. Liu, G. Y. Fang: Appl. Phy.s A. 100 (2010) 1143-1148.

Google Scholar

[16] C. Petit , J. Burress, Teresa J. Bandosz: Carbon. 49 (2011) 563-572.

Google Scholar

[17] G.Y. Fang, H.Li, Z. Chen, et al. J. Hazard, Mater. 181 (2010) 1004-1009.

Google Scholar