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Titlebook: Inorganic and Metallic Nanotubular Materials; Recent Technologies Tsuyoshi Kijima Book 2010 Springer-Verlag Berlin Heidelberg 2010 Fullere

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Synthesis and Functions of Fullerene Nanotubes,ively large inner diameter on the order of 100 nm. The FNTs will find various applications in the field of transistors, solar cells, catalysts, chemical synthesis templates, MEMS devices, and so forth in future.
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Synthesis and Applications of Imogolite Nanotubes,ibrous microstructure and its high surface area but also in its ability to adsorb water. So it can be expected to find a wide range of applications. In this chapter, synthesis method for imogolite and applications for anti-dewing materials and heat exchange material in adsorption-type heat pump systems are described.
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Synthesis and Applications of Chalcogenide Nanotubes,tructure [1]. Similar cylindrical structures were found in misfit-layer chalcogenides that are built up with alternating MCh. (M = transition metals; Ch = S, Se, Te) sandwiches and M’Ch (M’ = Pb, Sn, Bi, Lanthanides, etc.) double layers [2].
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Synthesis and Applications of Water Nanotubes,, referred to as an ice nanotube (ice NT) is formed in the cylindrical cavity of a single-walled carbon nanotube (SWCNT) and that the ice NT exhibits an abnormal melting point dependency on the cavity diameter. Possible applications and “exchange transition” found in gas atmosphere are also briefly discussed.
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Synthesis and Applications of Titanium Oxide Nanotube Thin Films,ertically aligned TiO. nanotube arrays were grown by a hydrothermal treatment of metal Ti thin film on glass substrates. These nanotube arrays were well adhered to the substrates and exhibited super-hydrophilicity even under the dark condition and the efficient electron field emission.
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Synthesis and Application of Titanium Oxide Nanohole Arrays, electrode for a lithium ion battery, in which an electric capacity close to 300 mAh/g was obtained. In addition to titania, this preparation method is applicable to various oxides such as tin oxide, zirconium oxide, indium oxide, and iron oxide.
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Synthesis, Structural Analysis, and Applications of Titanium Oxide Nanotubes,rs that were made from heat-treated TNT indicated high light harvest efficiency. Furthermore, we found that TNT has a high surface area and due to its interlayer structure which can insert hetero-atoms, N-doped TNT indicates high photo-catalysis in the visible light region.
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