Interest in the bulk transition metal dichalcogenides for their electronic, photovoltaic, and optical properties has grown and led to their use in many technological applications. We present a systematic investigation of their interlinked vibrational and dielectric properties using density functional theory and density functional perturbation theory, studying the effects of the spin-orbit interaction and of the long-range e−−e− correlation as part of our investigation. This study confirms that the spin-orbit interaction plays a small role in these physical properties, while the direct contribution of dispersion corrections is of crucial importance in the description of the interatomic force constants. Here, our analysis of the structural an...
Atomically thin transition metal dichalcogenides (TMDs) hold promising potential forapplications in ...
Atomically thin transition metal dichalcogenides (TMDs) hold promising potential forapplications in ...
Special Issue: Two-dimensional Materials: Electronic Structure and Many-Body Effects.Single- and few...
Interest in the bulk transition metal dichalcogenides for their electronic, photovoltaic, and optica...
First-principles studies of two-dimensional transition metal dichalcogenides have contributed consid...
Calculations of the vibrational properties of the transition-metal dichalcoginides depend critically...
One of the main characteristics of the new family of two-dimensional crystals of semiconducting tran...
In this research, the effects of Van der Waals forces on the structural, elastic, electronic, and op...
peer reviewedFirst-principles studies of two-dimensional transition metal dichalcogenides have contr...
We propose a protocol to disentangle the electro-vibrational structural coupling contributing to the...
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...
Excitons, trions, biexcitons, and exciton-trion complexes in two-dimensional transition metal dichal...
Transition-metal dichalcogenides (TMD) share the same global layered structure, but distinct polymor...
Atomically thin transition metal dichalcogenides (TMDs) hold promising potential forapplications in ...
Atomically thin transition metal dichalcogenides (TMDs) hold promising potential forapplications in ...
Special Issue: Two-dimensional Materials: Electronic Structure and Many-Body Effects.Single- and few...
Interest in the bulk transition metal dichalcogenides for their electronic, photovoltaic, and optica...
First-principles studies of two-dimensional transition metal dichalcogenides have contributed consid...
Calculations of the vibrational properties of the transition-metal dichalcoginides depend critically...
One of the main characteristics of the new family of two-dimensional crystals of semiconducting tran...
In this research, the effects of Van der Waals forces on the structural, elastic, electronic, and op...
peer reviewedFirst-principles studies of two-dimensional transition metal dichalcogenides have contr...
We propose a protocol to disentangle the electro-vibrational structural coupling contributing to the...
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...
Excitons, trions, biexcitons, and exciton-trion complexes in two-dimensional transition metal dichal...
Transition-metal dichalcogenides (TMD) share the same global layered structure, but distinct polymor...
Atomically thin transition metal dichalcogenides (TMDs) hold promising potential forapplications in ...
Atomically thin transition metal dichalcogenides (TMDs) hold promising potential forapplications in ...
Special Issue: Two-dimensional Materials: Electronic Structure and Many-Body Effects.Single- and few...