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Yasuda, Eiichi; Enami, Takashi; Hoteida, Nobuyuki; Lanticse-Diaz, L.J.; Tanabe, Yasuhiro; Akatsu, Takashi, E-mail: yasuda.e.aa.@m.titech.ac.jp2008
AbstractAbstract
[en] Last decade after our proposal of the 'Carbon Alloys' concept, many different kinds of Carbon Alloys, such as carbon nanotubes, carbon nanofibers, graphene sheet with magnetism, semi-conducting BCN compounds, graphite intercalation compounds, exfoliated carbon fiber, etc. have been found and developed. To extend the concept further, it is important to make it into intelligent materials by incorporating multiple functions. One example of the multi-functionalization is the development of homo-atomic Carbon Alloys from glassy carbon (GC) that exhibits high electrical conductivity and low gas permeability after treatment at critical conditions. Glassy carbon underwent metamorphosis to graphite spheres at HIP condition, and improved resistance to oxidation after alloying with Ta. The other one is shape utilization of the nano-sized carbon by understanding the effect of its large surfaces or interfaces in nanotechnology treatment. Recently carbon nanofiber was produced by polymer blend technology (PB) which was proposed by Prof. A. Oya during the Carbon Alloy project and progressed into intelligent carbon nanofiber (CNF) materials. CNF is combined into the polymer composites which is a candidate material for the bipolar separator in fuel cell. The superior properties, i.e., high electrical conductivity, high modulus, high strength, etc., of the CNF is being utilized in the preparation of this polymer composite
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STAC: 1. International conference on the science and technology for advanced ceramics; Kanagawa (Japan); 23-25 May 2007; JTMC: 2. International conference on joining technology for new metallic glasses and inorganic materials; Kanagawa (Japan); 23-25 May 2007; S0921-5107(07)00565-X; Available from http://dx.doi.org/10.1016/j.mseb.2007.09.086; Copyright (c) 2007 Elsevier Science B.V., Amsterdam, The Netherlands, All rights reserved.; Country of input: International Atomic Energy Agency (IAEA)
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Journal Article
Literature Type
Conference
Journal
Materials Science and Engineering. B, Solid-State Materials for Advanced Technology; ISSN 0921-5107;
; CODEN MSBTEK; v. 148(1-3); p. 7-12

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