Impact of Stone-Wales and lattice vacancy defects on the electro-thermal transport of the free standing structure of metallic ZGNR


Autoria(s): Saha, Dipankar; Sengupta, Amretashis; Bhattacharya, Sitangshu; Mahapatra, Santanu
Data(s)

2014

Resumo

We report the effect of topological as well as lattice vacancy defects on the electro-thermal transport properties of the metallic zigzag graphene nano ribbons at their ballistic limit. We employ the density function theory-Non equilibrium green's function combination to calculate the transmission details. We then present an elaborated study considering the variation in the electrical current and the heat current transport with the change in temperature as well as the voltage gradient across the nano ribbons. The comparative analysis shows, that in the case of topological defects, such as the Stone-Wales defect, the electrical current transport is minimum. Besides, for the voltage gradient of 0.5 Volt and the temperature gradient of 300 K, the heat current transport reduces by similar to 62 % and similar to 50% for the cases of Stones-Wales defect and lattice vacancy defect respectively, compared to that of the perfect one.

Formato

application/pdf

Identificador

http://eprints.iisc.ernet.in/50459/1/jou_com_ele_13-4_862_2014.pdf

Saha, Dipankar and Sengupta, Amretashis and Bhattacharya, Sitangshu and Mahapatra, Santanu (2014) Impact of Stone-Wales and lattice vacancy defects on the electro-thermal transport of the free standing structure of metallic ZGNR. In: JOURNAL OF COMPUTATIONAL ELECTRONICS, 13 (4, SI). pp. 862-871.

Publicador

SPRINGER

Relação

http://dx.doi.org/ 10.1007/s10825-014-0601-0

http://eprints.iisc.ernet.in/50459/

Palavras-Chave #Electronic Systems Engineering (Formerly, (CEDT) Centre for Electronic Design & Technology)
Tipo

Journal Article

PeerReviewed