We report a record low thermal conductivity in polycrystalline MoS obtained for ultrathin films with varying grain sizes and orientations. By optimizing the sulfurization parameters of nanometer-thick Mo layers, five MoS films containing a combination of horizontally and vertically oriented grains, with respect to the bulk (001) monocrystal, were grown. From transmission electron microscopy, the average grain size, typically below 10 nm, and proportion of differently oriented grains were extracted. The thermal conductivity of the suspended samples was extracted from a Raman laser-power-dependent study, and the lowest value of thermal conductivity of 0.27 W m K, which reaches a similar value as that of Teflon, is obtained in a polycrystallin...
Understanding heat flow in layered transition metal dichalcogenide (TMD) crystals is crucial for app...
Understanding phonon transport and thermal conductivity of layered materials is not only critical fo...
Extensive effort is dedicated to developing 2D materials as an alternative to Si‐based semiconductor...
We report a record low thermal conductivity in polycrystalline MoS obtained for ultrathin films with...
We report a record low thermal conductivity in polycrystalline MoS2obtained for ultrathin films with...
Heat conduction in 2D materials can be effectively engineered by means of controlling nanoscale grai...
In this work, we grow thin MoS2 films (50–150 nm) uniformly over large areas (\u3e1 cm2) with strong...
This study was completed to determine the anisotropy in molybdenum disulfide, MoS2, thin films. The...
The densification of integrated circuits requires thermal management strategies and high thermal con...
Large-area synthesis is of great demand for the preparation of high-performance transition-metal-dic...
Understanding heat flow in layered transition metal dichalcogenide (TMD) crystals is crucial for app...
Thermal transport property of homogeneous twisted molybdenum disulfide (MoS$_2$) is investigated usi...
We investigate the thermal conductivity in the armchair and zigzag MoS2 nanoribbons, by combining th...
International audienceWe characterize heat dissipation of supported molybdenum disulfide (MoS 2 ) mo...
Heat generated by electronic devices must be dissipated in order to ensure reliability and prevent d...
Understanding heat flow in layered transition metal dichalcogenide (TMD) crystals is crucial for app...
Understanding phonon transport and thermal conductivity of layered materials is not only critical fo...
Extensive effort is dedicated to developing 2D materials as an alternative to Si‐based semiconductor...
We report a record low thermal conductivity in polycrystalline MoS obtained for ultrathin films with...
We report a record low thermal conductivity in polycrystalline MoS2obtained for ultrathin films with...
Heat conduction in 2D materials can be effectively engineered by means of controlling nanoscale grai...
In this work, we grow thin MoS2 films (50–150 nm) uniformly over large areas (\u3e1 cm2) with strong...
This study was completed to determine the anisotropy in molybdenum disulfide, MoS2, thin films. The...
The densification of integrated circuits requires thermal management strategies and high thermal con...
Large-area synthesis is of great demand for the preparation of high-performance transition-metal-dic...
Understanding heat flow in layered transition metal dichalcogenide (TMD) crystals is crucial for app...
Thermal transport property of homogeneous twisted molybdenum disulfide (MoS$_2$) is investigated usi...
We investigate the thermal conductivity in the armchair and zigzag MoS2 nanoribbons, by combining th...
International audienceWe characterize heat dissipation of supported molybdenum disulfide (MoS 2 ) mo...
Heat generated by electronic devices must be dissipated in order to ensure reliability and prevent d...
Understanding heat flow in layered transition metal dichalcogenide (TMD) crystals is crucial for app...
Understanding phonon transport and thermal conductivity of layered materials is not only critical fo...
Extensive effort is dedicated to developing 2D materials as an alternative to Si‐based semiconductor...