Carbon nanotube junctions obtained by pulsed liquid injection chemical vapour deposition

Garcia, A. G.; Duarte Correa, M. J.; Perez Robles, J. F.; Romero, A. H.; Velasco-Santos, C.; Apatiga, L. M.

Abstract

The effect of substrate surface roughness on the synthesis of carbon nanotube (CNT) junctions is studied. CNTs were obtained by a pulsed liquid injection chemical vapour deposition system (PLICVD) and grown on quartz substrates with different roughnesses. Nickel particles were used as catalyst and acetone as the carbon precursor. Results shown that CNTs growth depend strongly on the substrate irregularity. When roughness is present, the presence of CNT junctions are increased. On the quartz surface, without any modification of roughness, CNTs are not obtained. Thus, a growth mechanism for CNT junctions, based on the substrate roughness is suggested. This method represents an important alternative to produce CNTs for applying them in nanoelectronic devices. (C) 2010 Elsevier B.V. All rights reserved.

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Título según WOS: ID WOS:000279229700073 Not found in local WOS DB
Título de la Revista: DIAMOND AND RELATED MATERIALS
Volumen: 19
Número: 7-9
Editorial: ELSEVIER SCIENCE SA
Fecha de publicación: 2010
Página de inicio: 1052
Página final: 1057
DOI:

10.1016/j.diamond.2010.02.034

Notas: ISI