Production and Identification of Vanadium Oxide Nanotubes

Document Type : Research Article

Authors

Department of Chemical Engineering, Arak Branch, Islamic Azad University, Arak, I.R. IRAN

Abstract

This manuscript is ommeted for publishing similar results by first author in the following journal:

                                           Indian Journal of Science and Technology, Vol.8, Supplementary Issue 9 (2015)  
                                             http://www.indjst.org/index.php/indjst/article/view/68569

Keywords

Main Subjects


[1] Iijima S., Helical Microtubules of Graphitic Crbon, Nature, 354(6348):56–58 (1991).
[2] Lam E., Luong J.H.T., Carbon Materials as Catalyst Supports and Catalysts in th Transformation of Biomass to Fuels and Chemicals, ACS Catalysis, 4(10): 3393-3410 (2014).
[3] Haffer S., Lüder C., Walther T., Köferstein R., Ebbinghaus S.G., Tiemann M.., A Synthesis Concept for a Nanostructured CoFe2O4/BaTiO3 Composite: Towards Multiferroics, Microporous and Mesoporous Materials, 196(2014): 300-304 (2014).
[4] Habibi M.H., Mardani M., Co-Precipitation Synthesis of Nano-Composites Consists of Zinc and Tin Oxides Coatings on Glass with Enhanced Photocatalytic Activity on Degradation  Reactive Blue 160 KE2B, Spectrochimica Acta Part A: Molecular and Biomolecular Spectroscopy, 137(0): 785-789 (2015).
[5] Jana N.R., Gearheart L., Murphy C.J., Wet Chemical Synthesisof Silver Nanorods and Nanowires of Controllable Aspect Ratio, Chem Commun, 2001(7):617–618 (2001).
[6] Tremel W., Inorganic Nanotubes, Chem. Int. Ed., 38: 2175-2179 ((1999))
[7] Shenton W., Douglas T., Young M., Stubbs G., Mann S., Adv. Mater., Inorganic-Organic Nanotube Composites from Template Mineralization, 11: 253-256 (1999).
[8] Chandrappa G.T., Steunou N., Cassaignon S., Bauvais C., Biswas P.K., Livage J., Vanadium Oxide: from Gels Tonanotubes, J. Sol. Gel. Sci. Technol., 26(1): 593-596 (2003).
[9]  Solsona B., Blasco T., López Nieto J.M., Peña M.L., Rey F., Vidal-Moya A., Vanadium Oxide Supported on MesoporousMCM-41 as Selective Catalysts  in the Oxidative Dehydrogenationof Alkanes, J. Catal., 203(2):443-452 (2001).
[10] Muhr H.J., Krumeich F., Sch¨onholzer U.P., Bieri F., Niederberger M.,Gaukler L.J., Nesper R., Vanadium Oxide Nanotubes—A New Flexible Vanadate Nanophase., Adv. Mater., 12:231-234 (2000).
[11] Zhang K.F., Guo D.J., Liu X., Li J., Li H.L., Su Z.X., Vanadium Oxide Nanotubes as the Support of Pd Catalysts for Methanol Oxidation in Alkaline Solution, J. Power.Sources., 162:1077- 1081  (2006).
[12] Spahr M.E., Stoschitzki-Bitterli P., Nesper R., Haas O., Nov0ak P., Vanadium Oxide Nanotubes. A New Nanostructured Redox‐Active Material for the Electrochemical Insertion of Lithium., J. Electrochem. Soc., 146: 2780-2783 (1999).
[13] Krumeich F., Muhr H.J., Niederberger M., Bieri F., Schnyder B., Nesper R., Morphology and Topochemical Rections of Novel Vanadium Oxide, J. Am. Chem. Soc., 121:8324- 8331 (1999).
[15] Yin H., Yu K., Zhang Z., Zeng M., Lou L., Zhu Z., Humidity Sensing Properties of Flower-Like VO2(B) and VO2(M) Nanostructures, Electroanalysis, 23: 1752-1758 (2011).
[16] Ajayan P.M., Stephan O., Redlich P., Colliex C., Nature, Carbon Nanotubes as Removable Templates for Metal-Oxide Nanocomposites and Nanostructures, 375:564- 567 (1995).
[17] Bieri F., Krumeich F., Muh H.J., Nesper R., Helv. the Discovery of VOx Nanotubes, Chain. Acta., 84:3015-3020  (2001).
[18] Grigorieva A.V., Goodilin E.A., Anikina A.V., Kolesnik I.V., Tretyakov Y.D., Polycrystalline Vanadium Oxide Nanorods: Growth, Structure and Improved Electrochemical Response as a Li-Ion Battery Cathode Material., Mendeleev Commun, 18:71-72 (2008).
[19] Sediri F., Touati F., Gharbi N., Sensor Pproperties of Vanadium Oxide Nanotubes., Mater. Lett., 61:1947-1950 (2007).
[20] Aghabozorg H.R., Mousavi R., Asckari S., Aghabozorg H., Effects of Synthesis Methods of Vanadium Oxide Nanotubes on the Inter Layer Distances, J. Nanopart, 9: 497-500 (2007).
[21] Chen W., Peng J., Mai L., Zhu Q., Xu Q., Micromorphology and Structure of Vanadium Oxide Nnanotubes, Mater Lett., 58: 2275-2278 (2004).
[22] Bouhedja L., Stenou N., Maquet J., Livage J., Sol-Gel Preparation and Characterization of Non-substituted and Sr-substituted Lanthanum Cobaltates, J. Solid. State. Chem., 162:315-318   (2001).
[25] Mai L., Chen W., Qing Xu., Zhu Q., Han C., Peng J., Cost-saving Synthesis of Vanadium Oxide Nanotubes, Solid. State. Commun., 126: 541-543 (2003).
[26] Chen X., Sun X., Li Y., Self-Assembling Vanadium Oxide Nanotubes by Organic Molecular Templates., Inorg. Chem., 41:4524-4530 (2002).
[27] Reinoso J.M., Muhr H.J., Krumich F., Bieri F., Nesper R., Colloid Chemistry I - Page 169 - Google Books Result., Helv.Chim. Acta., 83: 1724-1729 (2000)
[28] Awati P.S., Awate S.V., Shah P.P., Ramaswamy V., Photocured Materials: - Page 133 - Google Books Result., Catal. Commun., 4: 393-400 (2003).
[29] Niederberger M., Vanadium Oxide (2004).