Spin filtering and disorder-induced magnetoresistance in carbon nanotubes: Ab initio calculations


Autoria(s): Almeida, J. M. de; Rocha, Alexandre Reily; Silva, Antonio Jose Roque da; Fazzio, Adalberto
Contribuinte(s)

UNIVERSIDADE DE SÃO PAULO

Data(s)

18/04/2012

18/04/2012

2011

Resumo

Nitrogen-doped carbon nanotubes can provide reactive sites on the porphyrin-like defects. It is well known that many porphyrins have transition-metal atoms, and we have explored transition-metal atoms bonded to those porphyrin-like defects inN-doped carbon nanotubes. The electronic structure and transport are analyzed by means of a combination of density functional theory and recursive Green's function methods. The results determined the heme B-like defect (an iron atom bonded to four nitrogens) is the most stable and has a higher polarization current for a single defect. With randomly positioned heme B defects in nanotubes a few hundred nanometers long, the polarization reaches near 100%, meaning they are effective spin filters. A disorder-induced magnetoresistance effect is also observed in those long nanotubes, and values as high as 20 000% are calculated with nonmagnectic eletrodes.

FAPESP

Coordenacao de Aperfeicoamento de Pessoal de Nivel Superior (CAPES)

CNPq

Identificador

PHYSICAL REVIEW B, v.84, n.8, 2011

1098-0121

http://producao.usp.br/handle/BDPI/16247

10.1103/PhysRevB.84.085412

http://dx.doi.org/10.1103/PhysRevB.84.085412

Idioma(s)

eng

Publicador

AMER PHYSICAL SOC

Relação

Physical Review B

Direitos

restrictedAccess

Copyright AMER PHYSICAL SOC

Palavras-Chave #CNX NANOTUBES #SINGLE #CONDUCTANCE #TRANSPORT #EXCHANGE #VAPOR #ATOMS #GAS #Physics, Condensed Matter
Tipo

article

original article

publishedVersion