[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).
[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).
[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).
[17] Bieri F., Krumeich F., Muh H.J., Nesper R.,
Helv. the Discovery of VOx Nanotubes, Chain. Acta.,
84:3015-3020 (2001).
[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).
[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).
[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).