|国家预印本平台
首页|Thermal and thermoelectric transport in monolayer h-NbN: Roles of four-phonon scattering and tensile strain

Thermal and thermoelectric transport in monolayer h-NbN: Roles of four-phonon scattering and tensile strain

Thermal and thermoelectric transport in monolayer h-NbN: Roles of four-phonon scattering and tensile strain

来源:Arxiv_logoArxiv
英文摘要

Unlocking the thermal and thermoelectric potential of 2D materials, we explore the h-NbN monolayer, which lacks mirror symmetry and features a large acoustic-optical phonon gap and quadratic flexural mode. First-principles calculations and the Boltzmann transport formalism reveal a complex interplay of multi-phonon scattering processes, where flexural phonons and four-phonon interactions play a significant role in heat transport, primarily dominated by acoustic phonons. Notably, the four-phonon interactions are predominantly confined to acoustic phonons. Tensile strain preserves the underlying scattering mechanisms while reducing anharmonicity, consequently, the scattering rates, enhancing thermal conduction. Simultaneously, competing modifications in thermal and electrical transport shape the strain-dependent thermoelectric response, achieving a figure of merit approaching 1 at elevated temperatures, a testament to its thermoelectric promise. Our findings underscore the critical role of microscopic transport modeling in accurately capturing thermal and thermoelectric properties, paving the way for advanced applications of 2D materials.

Himanshu Murari、Subhradip Ghosh、Mukul Kabir、Ashis Kundu

热力工程、热机

Himanshu Murari,Subhradip Ghosh,Mukul Kabir,Ashis Kundu.Thermal and thermoelectric transport in monolayer h-NbN: Roles of four-phonon scattering and tensile strain[EB/OL].(2025-05-18)[2025-06-30].https://arxiv.org/abs/2505.12520.点此复制

评论