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Titlebook: Nanowires and Nanobelts: Materials, Properties and Devices; Volume 2: Nanowires Zhong Lin Wang Book 2003 Springer-Verlag US 2003 Nanotube.

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Growth of Oxide Nanorods through Sol Electrophoretic Depositionved mesoporous titania films are being intensively studied in inorganic—organic hybrid photoelectrochemical cells [.]. Further, many of the physical properties of oxide materials are tunable through appropriate doping or substitution [.]. Zirconia that is partially stabilized through doping with mat
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Sulphide Nanowiresergy. Therefore, they have attracted considerable technological and scientific interest [., .]. The metal sulphide semiconductors possess a variety crystalline phases depending largely on the atomic radius ratios and electronegativity differences of the constituent atoms of the semiconductors [.].
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Nanowires of Functional Oxidess with extremely low power consumption [.]. Among these semiconductors, some metal oxides, for instance, stannic oxide, titanium oxide, cuprous oxide and vanadium pentoxide are the most important base materials in industry for gas sensors, transistors, and electrode material as well as catalysts [., .].
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One-Step Hydrothermal Synthesis and Characterizations of Titanate Nanostructuresl compound will be fully satisfied on the nanotube surfaces so that to form a perfectly ordered, flawless nanotubular structure. Therefore nanotubes made from three-dimensional compounds cannot form a fully crystalline structure and the nanotube surface is normally active.
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