Recently, as a novel member of the IV-VI group compounds, two-dimensional (2D) buckled monolayer CSe has been discovered for use in high-performance light-emitting devices (Q. Zhang, Y. Feng, X. Chen, W. Zhang, L. Wu and Y. Wang, Nanomaterials, 2019, 9, 598). However, to date, the heat transport properties of this novel CSe is still lacking, which would hinder its potential application in electronic devices and thermoelectric materials that can generate electricity from waste heat. Here we systematically study the heat transport properties of monolayer CSe based on ab initio calculations and phonon Boltzmann transport theory. We find that the lattice thermal conductivity κlat of monolayer CSe is around 42 W m-1 K-1 at room temperature, whic...
With the rapid development of material preparation and quantum computation technologies, the discove...
Understanding heat flow in layered transition metal dichalcogenide (TMD) crystals is crucial for app...
Two-dimensional semiconductor materials with puckered structure offer a novel playground to implemen...
The main objective of this thesis is to study phonon thermal transport in two-dimensional (2D) mater...
The thesis focuses on the phonon an harmonicity and thermal transport in two dimensional(2D) materia...
We explore the excitonic, electronic, phononic and thermal properties of low-dimensional materials, ...
Two-dimensional (2D) CrB4 and MoB4 monolayers are typical graphene-like materials with excellent ele...
Strain engineering is an effective way to tune the thermal and electrical properties of novel two-di...
We study the lattice thermal conductivity of two-dimensional (2D) pentagonal systems, such as penta-...
The investigation of thermal properties of recently emerged two-dimensional (2D) materials is a nec...
We report, a detailed theoretical study on the lattice thermal conductivity of a suspended monolayer...
Niobium diselenide (NbSe2) is a layered transition metal dichalcogenide material which possesses uni...
Although some atomically thin 2D semiconductors have been found to possess good thermoelectric perfo...
Nanomechanical resonators have emerged as sensors with exceptional sensitivities. These sensing capa...
Elemental two-dimensional (2D) materials exhibit intriguing heat transport and phononic properties. ...
With the rapid development of material preparation and quantum computation technologies, the discove...
Understanding heat flow in layered transition metal dichalcogenide (TMD) crystals is crucial for app...
Two-dimensional semiconductor materials with puckered structure offer a novel playground to implemen...
The main objective of this thesis is to study phonon thermal transport in two-dimensional (2D) mater...
The thesis focuses on the phonon an harmonicity and thermal transport in two dimensional(2D) materia...
We explore the excitonic, electronic, phononic and thermal properties of low-dimensional materials, ...
Two-dimensional (2D) CrB4 and MoB4 monolayers are typical graphene-like materials with excellent ele...
Strain engineering is an effective way to tune the thermal and electrical properties of novel two-di...
We study the lattice thermal conductivity of two-dimensional (2D) pentagonal systems, such as penta-...
The investigation of thermal properties of recently emerged two-dimensional (2D) materials is a nec...
We report, a detailed theoretical study on the lattice thermal conductivity of a suspended monolayer...
Niobium diselenide (NbSe2) is a layered transition metal dichalcogenide material which possesses uni...
Although some atomically thin 2D semiconductors have been found to possess good thermoelectric perfo...
Nanomechanical resonators have emerged as sensors with exceptional sensitivities. These sensing capa...
Elemental two-dimensional (2D) materials exhibit intriguing heat transport and phononic properties. ...
With the rapid development of material preparation and quantum computation technologies, the discove...
Understanding heat flow in layered transition metal dichalcogenide (TMD) crystals is crucial for app...
Two-dimensional semiconductor materials with puckered structure offer a novel playground to implemen...