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Abstrakty
Bulk ZnO nanorod assemblies have been successfully fabricated on CuO nanowires through spin coating of organoprecursor gels. A thin film of CuO nanowires was first generated by direct heating of a metallic Cu-foil at 500 A degrees C in an air atmosphere. A stable colloidal organo-precursor sol synthesized by dissolving equimolar zinc acetate dihydrate and monoethanolamine in 2-methoxyethanol was subsequently repeatedly deposited onto the CuO nanowires by spin coating. The formation of ZnO nanorod assemblies was controlled by varying the number of coatings. The average diameter of the ZnO rods was determined to be similar to 600 nm.
Słowa kluczowe
Wydawca
Czasopismo
Rocznik
Tom
Strony
397--403
Opis fizyczny
Bibliogr. 22 poz., rys., wykr.
Twórcy
autor
- Centre for Social Contribution and Collaboration, Nagoya Institute of Technology, Nagoya 466-8555
autor
- Materials and Minerals Division, National Institute for Interdisciplinary Science and Technology (CSIR), Kerala, India
autor
- Department of Materials Engineering, University of Concepcion, Concepcion, Chile
autor
- Centre for Social Contribution and Collaboration, Nagoya Institute of Technology, Nagoya 466-8555
- Department of Frontier Materials, Nagoya Institute of Technology, Nagoya, Japan
autor
- Department of Frontier Materials, Nagoya Institute of Technology, Nagoya, Japan
Bibliografia
- [1] YOSHIDA T., TERADA K., SCHLETTWEIN D., OEKERMANN T., SUGIURA T., MINOURA H., Adv. Mater. 12 (2000), 1214.
- [2] BAXTER J.B., AYDIL E.S., Appl. Phys. Lett. 86 (2005), 53114.
- [3] ] WU Y., YAN H., HUANG M., MESSER B., SONG J. H., YANG P., Chem. Eur. J. 8 (2002), 1261.
- [4] WANG Z. L., PAN Z.W., DAI Z.R., U.S. Patent No. 6586095 (July 1, 2003).
- [5] YAZAWA M., KOGUCHI M., MUTO A., OZAWA M., HIRUMA K., Appl. Phys. Lett. 61, (1992) 2051.
- [6] ADACHI M., HARADA T., Langmuir 15, (1999) 7097.
- [7] CHOI Y. C. et al., Adv. Mater 12, (2000) 746.
- [8] MORALES A. M., LEIBER C.M., Science 279, (1998) 2089.
- [9] WANG C., FU X. Q., XUE X. Y., WANG Y. G., WANG T. H., Nanotechnology 18, 145506 (2007).
- [10] ZHU Y. W. et al., Nanotechnology, 16, 88 (2005).
- [11] ANANDAN S., WEN X., S. YANG, Material Chemistry and Physics 93, 35 (2005).
- [12] TRENTLER T. J., HICKMAN K. M., GEOL S. C., VIANO A. M., GIBBONS P. C., BUHRO W. E., Science 270, (1995) 1791.
- [13] LI C., LIU Z.T.,YANG Y., Nanotechnology 17, (2006) 1851.
- [14] ZHANG K, ROSSI C., ARDILA G. A., RODRIGUEZ R., TENAILEAU C., ALPHONSE P., Appl. Phys. Lett. 91, (2007) 113117.
- [15] CHALTYKYAN O. A., Copper-catalytic Reactions, Consultants Bureau, New York, NY, USA, 1966.
- [16] HOMMA T., ISSIKI S., Acta Metall. 12, (1964) 1092.
- [17] WANG W. Z., WANG G. H., WANG X. S., ZHAN Y. J., LIU Y. K., ZHENG C. L., Adv. Mater 14, 6 (2002) 7.
- [18] HSIEH C. T., CHEN J. M., LIN H. H, SHIH H. C., Appl. Phys. Lett. 82, (2003) 3316.
- [19] JIANG K., HERRICKS T., XIA Y., Nano. Lett. 2 812, (2002) 1333.
- [20] WANG S., HUANG Q., WEN X., LI. X. AND YANG S., Phys. Chem. 4, (2002) 3425-3430.
- [21] ZHU Y. W. et al., Nanotechnology 16, (2005) 88.
- [22] ZONG B. et al., Chem. Mater. 17, (2005) 1515.
Typ dokumentu
Bibliografia
Identyfikator YADDA
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