Issue 7, 2023

Far-field thermal properties of β12 borophene under an external electric field

Abstract

Borophene has been reported as the latest very promising 2D material. We theoretically investigate the thermal radiation of β12 borophene. β12 borophene has been composited on Ag substrate. Theoretical research frequently mentions three types of model of β12 borophene. The energy bands of the three models are different. Homogeneous and inversion symmetric models have a gapless Dirac cone near the K(K′) point, while they are gapped in the inversion non-symmetric model. The homogeneous model has gapless triplet fermions and three-band touching points at high-symmetry points. The optical conductivity exhibits peaks due to the energy transition of high-symmetry points. The radiation spectrum follows Wien's displacement law in homogeneous and inversion symmetric models, while it is broken in the inversion non-symmetric model. The total energy radiation changes as the voltage increases for the three β12 borophene models. The radiation of energy can be controlled by applying a suitable voltage.

Graphical abstract: Far-field thermal properties of β12 borophene under an external electric field

Article information

Article type
Paper
Submitted
21 Nov 2022
Accepted
20 Jan 2023
First published
20 Jan 2023

Phys. Chem. Chem. Phys., 2023,25, 5694-5700

Far-field thermal properties of β12 borophene under an external electric field

W. Xie, W. Qian and Y. Zhang, Phys. Chem. Chem. Phys., 2023, 25, 5694 DOI: 10.1039/D2CP05441H

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