The lattice thermal conductivity of layered group 4 disulfides TiS2, ZrS2, and HfS2 has been studied using dispersion-corrected hybrid density functional methods. Results obtained using both relaxation time approximation (RTA) and full solution of linearized Boltzmann transport equation have been compared and rigorously analyzed. The periodic trends of lattice thermal conductivity and its components are investigated in detail. The in-plane RTA lattice thermal conductivities of TiS2, ZrS2, and HfS2 at 300 K are 6.1, 8.5, and 11.7 W m(-1) K-1, respectively. In the cross-plane direction, where the metal sulfide layers are kept together by weak van der Waals interactions, the RTA lattice thermal conductivities of TiS2, ZrS2, and HfS2 at 300 K a...
Thermal transport in a material is governed by anharmonicity of crystal potential, which depends on ...
Chalcopyrite-structured semiconductors have promising potential as low-cost thermoelectric materials...
Kandemir, Ali/0000-0001-9813-6421; Yapicioglu, Haluk/0000-0003-2296-4989; Sevik, Cem/0000-0002-2412-...
The lattice thermal conductivity of layered group 4 disulfides TiS2, ZrS2, and HfS2 has been studied...
The electronic and vibrational properties of TiS2, ZrS2, and HfS2 have been studied using dispersion...
The electronic and vibrational properties of TiS2, ZrS2, and HfS2 have been studied using dispersion...
The electronic and vibrational properties of TiS2, ZrS2, and HfS2 have been studied using dispersion...
The electronic and vibrational properties of TiS2, ZrS2, and HfS2 have been studied using dispersion...
Ab initio simulation of phonon spectra and lattice thermal conductivity of monomolecular layers of t...
The lattice thermal expansion and conductivity in bulk Mo and W-based transition metal dichalcogenid...
The constant development of new technologies and finiteness of natural resources along with increasi...
In recent years, transition metal dichalcogenides (TMDs) displaying astonishing properties are emerg...
We carry out a systematic study of the thermal conductivity of four single-layer transition metal d...
This work utilised Density Functional Theory and Wannier functions for the evaluation of the Boltz...
This work utilised Density Functional Theory and Wannier functions for the evaluation of the Boltz...
Thermal transport in a material is governed by anharmonicity of crystal potential, which depends on ...
Chalcopyrite-structured semiconductors have promising potential as low-cost thermoelectric materials...
Kandemir, Ali/0000-0001-9813-6421; Yapicioglu, Haluk/0000-0003-2296-4989; Sevik, Cem/0000-0002-2412-...
The lattice thermal conductivity of layered group 4 disulfides TiS2, ZrS2, and HfS2 has been studied...
The electronic and vibrational properties of TiS2, ZrS2, and HfS2 have been studied using dispersion...
The electronic and vibrational properties of TiS2, ZrS2, and HfS2 have been studied using dispersion...
The electronic and vibrational properties of TiS2, ZrS2, and HfS2 have been studied using dispersion...
The electronic and vibrational properties of TiS2, ZrS2, and HfS2 have been studied using dispersion...
Ab initio simulation of phonon spectra and lattice thermal conductivity of monomolecular layers of t...
The lattice thermal expansion and conductivity in bulk Mo and W-based transition metal dichalcogenid...
The constant development of new technologies and finiteness of natural resources along with increasi...
In recent years, transition metal dichalcogenides (TMDs) displaying astonishing properties are emerg...
We carry out a systematic study of the thermal conductivity of four single-layer transition metal d...
This work utilised Density Functional Theory and Wannier functions for the evaluation of the Boltz...
This work utilised Density Functional Theory and Wannier functions for the evaluation of the Boltz...
Thermal transport in a material is governed by anharmonicity of crystal potential, which depends on ...
Chalcopyrite-structured semiconductors have promising potential as low-cost thermoelectric materials...
Kandemir, Ali/0000-0001-9813-6421; Yapicioglu, Haluk/0000-0003-2296-4989; Sevik, Cem/0000-0002-2412-...