Layered two-dimensional (2D) materials have highly anisotropic thermal properties between the in-plane and cross-plane directions. Conventionally, it is thought that cross-plane thermal conductivities (κ z) are low, and therefore c-axis phonon mean free paths (MFPs) are small. Here, we measure κ z across MoS2 films of varying thickness (20-240 nm) and uncover evidence of very long c-axis phonon MFPs at room temperature in these layered semiconductors. Experimental data obtained using time-domain thermoreflectance (TDTR) are in good agreement with first-principles density functional theory (DFT). These calculations suggest that ∼50% of the heat is carried by phonons with MFP > 200 nm, exceeding kinetic theory estimates by nearly 2 orders ...
The possibility of tuning the vibrational properties and the thermal conductivity of layered van der...
The possibility of tuning the vibrational properties and the thermal conductivity of layered van der...
Two dimensional (2D) materials demonstrate several novel electrical, mechanical, and thermal propert...
Layered two-dimensional (2D) materials have highly anisotropic thermal properties between the in-pla...
Layered two-dimensional (2D) materials have highly anisotropic thermal properties between the in-pla...
Layered two-dimensional (2D) materials have highly anisotropic thermal properties between the in-pla...
Understanding heat flow in layered transition metal dichalcogenide (TMD) crystals is crucial for app...
We show that the lattice contribution to the thermal conductivity of MoS2 strongly dominates the car...
Understanding heat flow in layered transition metal dichalcogenide (TMD) crystals is crucial for app...
Understanding heat flow in layered transition metal dichalcogenide (TMD) crystals is crucial for app...
Understanding heat flow in layered transition metal dichalcogenide (TMD) crystals is crucial for app...
In this work, we grow thin MoS2 films (50–150 nm) uniformly over large areas (\u3e1 cm2) with strong...
Quantification of lattice thermal conductivity of two-dimensional semiconductors like MoS2 is necess...
Low-dimensional and nanostructured materials have been shown to be of exceptional electronic, optica...
In this article, we have investigated the anisotropic nature of thermal transport in molybdenum disu...
The possibility of tuning the vibrational properties and the thermal conductivity of layered van der...
The possibility of tuning the vibrational properties and the thermal conductivity of layered van der...
Two dimensional (2D) materials demonstrate several novel electrical, mechanical, and thermal propert...
Layered two-dimensional (2D) materials have highly anisotropic thermal properties between the in-pla...
Layered two-dimensional (2D) materials have highly anisotropic thermal properties between the in-pla...
Layered two-dimensional (2D) materials have highly anisotropic thermal properties between the in-pla...
Understanding heat flow in layered transition metal dichalcogenide (TMD) crystals is crucial for app...
We show that the lattice contribution to the thermal conductivity of MoS2 strongly dominates the car...
Understanding heat flow in layered transition metal dichalcogenide (TMD) crystals is crucial for app...
Understanding heat flow in layered transition metal dichalcogenide (TMD) crystals is crucial for app...
Understanding heat flow in layered transition metal dichalcogenide (TMD) crystals is crucial for app...
In this work, we grow thin MoS2 films (50–150 nm) uniformly over large areas (\u3e1 cm2) with strong...
Quantification of lattice thermal conductivity of two-dimensional semiconductors like MoS2 is necess...
Low-dimensional and nanostructured materials have been shown to be of exceptional electronic, optica...
In this article, we have investigated the anisotropic nature of thermal transport in molybdenum disu...
The possibility of tuning the vibrational properties and the thermal conductivity of layered van der...
The possibility of tuning the vibrational properties and the thermal conductivity of layered van der...
Two dimensional (2D) materials demonstrate several novel electrical, mechanical, and thermal propert...