Artículo
Thermal conductivity of Fe graphitized wood derived carbon
Autor/es | Ramírez Rico, Joaquín
Gutiérrez Pardo, Antonio Anselmo Martínez Fernández, Julián Popov, V. V. Orlova, T. S. |
Departamento | Universidad de Sevilla. Departamento de Física de la Materia Condensada |
Fecha de publicación | 2016 |
Fecha de depósito | 2018-10-10 |
Publicado en |
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Resumen | Graphitic porous carbon materials from pyrolysis of wood precursors were obtained by means of a nanosized Fe catalyst, and their microstructure and electrical and thermal transport properties investigated. Thermal and ... Graphitic porous carbon materials from pyrolysis of wood precursors were obtained by means of a nanosized Fe catalyst, and their microstructure and electrical and thermal transport properties investigated. Thermal and electrical conductivity of graphitized carbon materials increase with the pyrolysis temperature, indicating a relationship between the degree of graphitization and thus in crystallite size with transport properties in the resulting carbon scaffolds. Evaluation of the experimental results indicate that thermal conductivity is mainly through phonons and increases with the temperature in Fe-catalyzed carbons suggesting that the mean free path of phonons in the material is small and defect scattering dominates over phonon-phonon interactions in the range from room temperature to 800 °C. |
Agencias financiadoras | Junta de Andalucía Ministerio de Economía y Competitividad (MINECO). España |
Identificador del proyecto | PE2012-TEP862
MAT2013-41233-R |
Cita | Ramírez Rico, J., Gutiérrez Pardo, A.A., Martínez Fernández, J., Popov, V.V. y Orlova, T.S. (2016). Thermal conductivity of Fe graphitized wood derived carbon. Materials and Design, 99, 528-534. |
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