English

Orientation Dependent Thermal Conductance in Single-Layer MoS2

Materials Science 2013-07-12 v2 Mesoscale and Nanoscale Physics

Abstract

We investigate the thermal conductivity in the armchair and zigzag MoS2_{2} nanoribbons, by combining the non-equilibrium Green's function approach and the first-principles method. A strong orientation dependence is observed in the thermal conductivity. Particularly, the thermal conductivity for the armchair MoS2_{2} nanoribbon is about 673.6 Wm1^{-1}K1^{-1} in the armchair nanoribbon, and 841.1 Wm1^{-1}K1^{-1} in the zigzag nanoribbon at room temperature. By calculating the Caroli transmission, we disclose the underlying mechanism for this strong orientation dependence to be the fewer phonon transport channels in the armchair MoS2_{2} nanoribbon in the frequency range of [150, 200] {cm1^{-1}}. Through the scaling of the phonon dispersion, we further illustrate that the thermal conductivity calculated for the MoS2_{2} nanoribbon is esentially in consistent with the superior thermal conductivity found for graphene.

Keywords

Cite

@article{arxiv.1303.5548,
  title  = {Orientation Dependent Thermal Conductance in Single-Layer MoS2},
  author = {Jin-Wu Jiang and Xiaoying Zhuang and Timon Rabczuk},
  journal= {arXiv preprint arXiv:1303.5548},
  year   = {2013}
}

Comments

accepted by Scientific Report

R2 v1 2026-06-21T23:46:28.052Z