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Atomistic simulation of thermoelectric properties in cove-edged graphene nanoribbons.

Authors :
Xie, Zhong-Xiang
Chen, Xue-Kun
Yu, Xia
Deng, Yuan-Xiang
Zhang, Yong
Zhou, Wu-Xing
Jia, Pin-Zhen
Source :
Journal of Applied Physics. 1/14/2024, Vol. 135 Issue 2, p1-7. 7p.
Publication Year :
2024

Abstract

We present an atomistic simulation of thermoelectric properties in cove-edged graphene nanoribbons (CGNRs) via the nonequilibrium Green's function. Different from gapless zigzag graphene nanoribbons (ZGNRs), CGNRs exhibit a noticeable bandgap. Such a bandgap can be modulated by varying three structural parameters (namely, the width N, the distance between adjacent coves m, as well as the shortest offset n) of CGNRs, which can give rise to the transition from semiconducting to semi-metallic. Due to the less dispersive phonon bands and the decrease in the number of phonon channels of CGNRs, they are found to have the lower phonon thermal conductance than ZGNRs. Modulation of CGNRs can produce over tenfold improvement of the maximum of ZT compared to ZGNRs. This improvement is due to the promotion of the Seebeck coefficient together with the degradation of the phonon thermal conductance of CGNRs compared to ZGNRs. [ABSTRACT FROM AUTHOR]

Details

Language :
English
ISSN :
00218979
Volume :
135
Issue :
2
Database :
Academic Search Index
Journal :
Journal of Applied Physics
Publication Type :
Academic Journal
Accession number :
174779005
Full Text :
https://doi.org/10.1063/5.0184595