Poly(hydridocarbyne) as Highly Processable Insulating Polymer Precursor to Micro/Nanostructures and Graphite Conductors

Carbon-based electronic materials have received much attention since the discovery and elucidation of the properties of the nanotube, fullerene allotropes, and conducting polymers. Amorphous carbon, graphite, graphene, and diamond have also been the topics of intensive research. In accordance with t...

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Veröffentlicht in:Journal of nanomaterials 2009-01, Vol.2009 (2009), p.1-4
Hauptverfasser: Katzenmeyer, Aaron M., Bayam, Yavuz, VJ, Logeeswaran, Pitcher, Michael W., Nur, Yusuf, Seyyidoğlu, Semih, Toppare, Levent K., Talin, A. Alec, Han, Huilan, Davis, Cristina E., Islam, M. Saif
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Sprache:eng
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Zusammenfassung:Carbon-based electronic materials have received much attention since the discovery and elucidation of the properties of the nanotube, fullerene allotropes, and conducting polymers. Amorphous carbon, graphite, graphene, and diamond have also been the topics of intensive research. In accordance with this interest, we herein provide the details of a novel and facile method for synthesis of poly(hydridocarbyne) (PHC), a preceramic carbon polymer reported to undergo a conversion to diamond-like carbon (DLC) upon pyrolysis and also provide electrical characterization after low-temperature processing and pyrolysis of this material. The results indicate that the strongly insulating polymer becomes notably conductive in bulk form upon heating and contains interspersed micro- and nanostructures, which are the subject of ongoing research.
ISSN:1687-4110
1687-4129
DOI:10.1155/2009/832327