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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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Structure and Properties of Imogolite Nanotubes and Their Application to Polymer Nanocomposites,er of ca. 2.5 nm, an internal diameter of less than 1 nm, and lengths ranging from several hundred nanometers to several micrometers. This chapter describes the synthesis and properties of imogolite, along with its application to nanohybrids with polymers.
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Design and Synthesis of Titanium Oxide Nanotubes, the nanotubes is about 50 nm. The resistivity of titanium oxide can be decreased by doping and/or reduction. Long titanium oxide nanotubes are expected for many electrical device applications such as sensor, electrode, FET, photocatalyst, and dye-sensitized solar cell (DSC; Grätzel cells).
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Synthesis and Applications of Titanium Oxide Nanotubes,pen-end nanotubular morphology with typically 8–10 and 5–7 nm in outer and inner diameters, respectively. Because of the mutual and synergy combination of its low-dimensional nanostructure and physical-chemical characteristics of TiO. semiconductor, properties enhancements and novel functionalizatio
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Synthesis, Structural Analysis, and Applications of Titanium Oxide Nanotubes, microscopy method, the electric structure, crystal structure, and morphology of the TNT were analyzed. As a practical application, we studied the properties of TNT as the light electrodes of dye-sensitized solar cells and photo-catalysts in visible light. For DSC, light electrodes using nano-whiske
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Synthesis and Application of Titanium Oxide Nanohole Arrays,epared by a liquid phase deposition method. Heat treatment at 900°C results in a titania nanohole array that consists of highly crystalline anatase and has good photocatalytic properties. It was found that dissolution of anodic alumina and the deposition of titania took place simultaneously, and alu
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Synthesis and Applications of Molybdenum Oxide Nanotubes,r functionalities through enlargement in their surface areas, mechanical strength, and novel functionalities. This chapter describes formation of Mo oxide nanotubes having rectangular cross sections by use of a combustion-flame method.
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