Research paperComputational DFTComputational MDTheoreticalModeling Interlayer Interactions and Phonon Thermal Transport in Silicene BilayerSapta Sindhu Paul Chowdhury, Appalakondaiah Samudrala, Santosh MogurampellyarXiv·2023·10.1063/1.4861736·arXiv:2305.15423AbstractWe develop an accurate interlayer pairwise potential derived from the ab-initio calculations and investigate the thermal transport of silicene bilayers within the framework of equilibrium molecular dynamics simulations. The electronic properties are found to be sensitive to the temperature with the opening of the band gap in the Γ→M direction. The calculated phonon thermal conductivity of bilayer silicene is surprisingly higher than that of monolayer silicene, contrary to the trends reported for other classes of 2D materials like graphene and hBN bilayers. This counterintuitive behavior of the bilayer silicene is attributed to the interlayer interaction effects and inherent buckling, which lead to a higher group velocity in the LA₁/LA₂ phonon modes. The thermal conductivity of both the mono- and bilayer silicene decreases with temperature as κ ∼T −0.9 because of the strong correlations between the characteristic timescales of heat current autocorrelation function and temperature (τ ∼T −0.75). The mechanisms underlying phonon thermal transport in silicene bilayers are further established by analyzing temperature induced changes in acoustic group velocity.Read more
DFT-modeled monolayer silicene in the low-buckled geometry used as a reference system for interlayer binding and comparison with bilayer behavior.No measurements recordedSimulated Supercell DftSiStudied MaterialExpand
DFT-modeled silicene bilayer with P-3m1 symmetry used to derive the interlayer separation and binding-energy curve.5 propertiesSimulated Supercell DftSiStudied MaterialExpand
Classical molecular-dynamics silicene monolayer system using the Zhang et al. intralayer Stillinger-Weber potential.2 propertiesSimulated Configuration MlipSiStudied MaterialExpand
Classical molecular-dynamics silicene bilayer system using Stillinger-Weber intralayer and Lennard-Jones interlayer interactions.2 propertiesSimulated Configuration MlipSiStudied MaterialExpand
Research paperComputational DFTComputational MDTheoreticalModeling Interlayer Interactions and Phonon Thermal Transport in Silicene BilayerSapta Sindhu Paul Chowdhury, Appalakondaiah Samudrala, Santosh MogurampellyarXiv·2023·10.1063/1.4861736·arXiv:2305.15423AbstractWe develop an accurate interlayer pairwise potential derived from the ab-initio calculations and investigate the thermal transport of silicene bilayers within the framework of equilibrium molecular dynamics simulations. The electronic properties are found to be sensitive to the temperature with the opening of the band gap in the Γ→M direction. The calculated phonon thermal conductivity of bilayer silicene is surprisingly higher than that of monolayer silicene, contrary to the trends reported for other classes of 2D materials like graphene and hBN bilayers. This counterintuitive behavior of the bilayer silicene is attributed to the interlayer interaction effects and inherent buckling, which lead to a higher group velocity in the LA₁/LA₂ phonon modes. The thermal conductivity of both the mono- and bilayer silicene decreases with temperature as κ ∼T −0.9 because of the strong correlations between the characteristic timescales of heat current autocorrelation function and temperature (τ ∼T −0.75). The mechanisms underlying phonon thermal transport in silicene bilayers are further established by analyzing temperature induced changes in acoustic group velocity.Read more
DFT-modeled monolayer silicene in the low-buckled geometry used as a reference system for interlayer binding and comparison with bilayer behavior.No measurements recordedSimulated Supercell DftSiStudied MaterialExpand
DFT-modeled silicene bilayer with P-3m1 symmetry used to derive the interlayer separation and binding-energy curve.5 propertiesSimulated Supercell DftSiStudied MaterialExpand
Classical molecular-dynamics silicene monolayer system using the Zhang et al. intralayer Stillinger-Weber potential.2 propertiesSimulated Configuration MlipSiStudied MaterialExpand
Classical molecular-dynamics silicene bilayer system using Stillinger-Weber intralayer and Lennard-Jones interlayer interactions.2 propertiesSimulated Configuration MlipSiStudied MaterialExpand
Research paperComputational DFTComputational MDTheoreticalModeling Interlayer Interactions and Phonon Thermal Transport in Silicene BilayerSapta Sindhu Paul Chowdhury, Appalakondaiah Samudrala, Santosh MogurampellyarXiv·2023·10.1063/1.4861736·arXiv:2305.15423AbstractWe develop an accurate interlayer pairwise potential derived from the ab-initio calculations and investigate the thermal transport of silicene bilayers within the framework of equilibrium molecular dynamics simulations. The electronic properties are found to be sensitive to the temperature with the opening of the band gap in the Γ→M direction. The calculated phonon thermal conductivity of bilayer silicene is surprisingly higher than that of monolayer silicene, contrary to the trends reported for other classes of 2D materials like graphene and hBN bilayers. This counterintuitive behavior of the bilayer silicene is attributed to the interlayer interaction effects and inherent buckling, which lead to a higher group velocity in the LA₁/LA₂ phonon modes. The thermal conductivity of both the mono- and bilayer silicene decreases with temperature as κ ∼T −0.9 because of the strong correlations between the characteristic timescales of heat current autocorrelation function and temperature (τ ∼T −0.75). The mechanisms underlying phonon thermal transport in silicene bilayers are further established by analyzing temperature induced changes in acoustic group velocity.Read more
DFT-modeled monolayer silicene in the low-buckled geometry used as a reference system for interlayer binding and comparison with bilayer behavior.No measurements recordedSimulated Supercell DftSiStudied MaterialExpand
DFT-modeled silicene bilayer with P-3m1 symmetry used to derive the interlayer separation and binding-energy curve.5 propertiesSimulated Supercell DftSiStudied MaterialExpand
Classical molecular-dynamics silicene monolayer system using the Zhang et al. intralayer Stillinger-Weber potential.2 propertiesSimulated Configuration MlipSiStudied MaterialExpand
Classical molecular-dynamics silicene bilayer system using Stillinger-Weber intralayer and Lennard-Jones interlayer interactions.2 propertiesSimulated Configuration MlipSiStudied MaterialExpand
Research paperComputational DFTComputational MDTheoreticalModeling Interlayer Interactions and Phonon Thermal Transport in Silicene BilayerSapta Sindhu Paul Chowdhury, Appalakondaiah Samudrala, Santosh MogurampellyarXiv·2023·10.1063/1.4861736·arXiv:2305.15423AbstractWe develop an accurate interlayer pairwise potential derived from the ab-initio calculations and investigate the thermal transport of silicene bilayers within the framework of equilibrium molecular dynamics simulations. The electronic properties are found to be sensitive to the temperature with the opening of the band gap in the Γ→M direction. The calculated phonon thermal conductivity of bilayer silicene is surprisingly higher than that of monolayer silicene, contrary to the trends reported for other classes of 2D materials like graphene and hBN bilayers. This counterintuitive behavior of the bilayer silicene is attributed to the interlayer interaction effects and inherent buckling, which lead to a higher group velocity in the LA₁/LA₂ phonon modes. The thermal conductivity of both the mono- and bilayer silicene decreases with temperature as κ ∼T −0.9 because of the strong correlations between the characteristic timescales of heat current autocorrelation function and temperature (τ ∼T −0.75). The mechanisms underlying phonon thermal transport in silicene bilayers are further established by analyzing temperature induced changes in acoustic group velocity.Read more
DFT-modeled monolayer silicene in the low-buckled geometry used as a reference system for interlayer binding and comparison with bilayer behavior.No measurements recordedSimulated Supercell DftSiStudied MaterialExpand
DFT-modeled silicene bilayer with P-3m1 symmetry used to derive the interlayer separation and binding-energy curve.5 propertiesSimulated Supercell DftSiStudied MaterialExpand
Classical molecular-dynamics silicene monolayer system using the Zhang et al. intralayer Stillinger-Weber potential.2 propertiesSimulated Configuration MlipSiStudied MaterialExpand
Classical molecular-dynamics silicene bilayer system using Stillinger-Weber intralayer and Lennard-Jones interlayer interactions.2 propertiesSimulated Configuration MlipSiStudied MaterialExpand