Nanomechanical resonators have emerged as sensors with exceptional sensitivities. These sensing capabilities open new possibilities in the studies of the thermodynamic properties in condensed matter. Here, we use mechanical sensing as a novel approach to measure the thermal properties of low-dimensional materials. We measure the temperature dependence of both the thermal conductivity and the specific heat capacity of a transition metal dichalcogenide monolayer down to cryogenic temperature, something that has not been achieved thus far with a single nanoscale object. These measurements show how heat is transported by phonons in two-dimensional systems. Both the thermal conductivity and the specific heat capacity measurements are consistent ...
Understanding thermal transport properties of materials is essential for both device applications an...
Heat conduction by phonons is a ubiquitous process that incorporates a wide range of physics and pla...
This review summarizes recent studies of thermal transport in nanoscaled semiconductors. Different f...
Nanomechanical resonators have emerged as sensors with exceptional sensitivities. These sensing capa...
Understanding heat flow in layered transition metal dichalcogenide (TMD) crystals is crucial for app...
Suspended monolayer transition metal dichalcogenides (TMD) aremembranes that combine ultralow mass a...
Quantification of lattice thermal conductivity of two-dimensional semiconductors like MoS2 is necess...
Heat dissipation and thermal management are central challenges in various areas of science and techn...
Optimal regulation of lattice thermal conductivity in low-dimensional materials is fundamental to ob...
Low-dimensional and nanostructured materials have been shown to be of exceptional electronic, optica...
Emerging quantum technologies require mastering thermal management, especially at the nanoscale. It ...
We are performing experiments to probe directly the thermal conductance of suspended nanostructures ...
Heat conduction in nanomaterials is an important area of study, with both fundamental and technologi...
One significant challenge in the development of micro- and nano-electronic devices is thermal manage...
The development of advanced nanoelectronic devices based on emergent two-dimensional nanomaterials h...
Understanding thermal transport properties of materials is essential for both device applications an...
Heat conduction by phonons is a ubiquitous process that incorporates a wide range of physics and pla...
This review summarizes recent studies of thermal transport in nanoscaled semiconductors. Different f...
Nanomechanical resonators have emerged as sensors with exceptional sensitivities. These sensing capa...
Understanding heat flow in layered transition metal dichalcogenide (TMD) crystals is crucial for app...
Suspended monolayer transition metal dichalcogenides (TMD) aremembranes that combine ultralow mass a...
Quantification of lattice thermal conductivity of two-dimensional semiconductors like MoS2 is necess...
Heat dissipation and thermal management are central challenges in various areas of science and techn...
Optimal regulation of lattice thermal conductivity in low-dimensional materials is fundamental to ob...
Low-dimensional and nanostructured materials have been shown to be of exceptional electronic, optica...
Emerging quantum technologies require mastering thermal management, especially at the nanoscale. It ...
We are performing experiments to probe directly the thermal conductance of suspended nanostructures ...
Heat conduction in nanomaterials is an important area of study, with both fundamental and technologi...
One significant challenge in the development of micro- and nano-electronic devices is thermal manage...
The development of advanced nanoelectronic devices based on emergent two-dimensional nanomaterials h...
Understanding thermal transport properties of materials is essential for both device applications an...
Heat conduction by phonons is a ubiquitous process that incorporates a wide range of physics and pla...
This review summarizes recent studies of thermal transport in nanoscaled semiconductors. Different f...