Solid-state thermal control devices that present an asymmetric heat flow depending on thermal bias directionality, referred to as thermal diodes, have recently received increased attention for energy management. The use of materials that can change phase is a common approach to design thermal diodes, but typical sizes, moderate rectification ratios, and narrow thermal tunability limit their potential applications. In this work, we propose a multilayer thermal diode made of a combination of phase change and invariant materials. This device presents state-of-the-art thermal rectification ratios up to 136% for a temperature range between 300 K and 500 K. Importantly, this design allows to switch between distinct rectification states that can b...
This book presents a comprehensive introduction to the use of solid‐liquid phase change materials to...
We theoretically analyze two near-field thermal rectification devices: a radiative thermal diode and...
The phase change materials (PCM) are materials that can improve thermal energy storage and productio...
Solid-state thermal control devices that present an asymmetric heat flow depend-ing on thermal bias ...
Thermal diodes are devices that allow heat to flow preferentially in one direction. This unique ther...
Materials designed to undergo a phase transition at a prescribed temperature have been advanced as e...
We present a thermal rectification device concept based on far-field radiative exchange between two ...
Thermal control elements, i.e., thermal diodes, switches, and regulators, can control the heat flow ...
International audienceWe theoretically and comparatively study the performance of spherical and cyli...
The thermal rectification of conductive and radiative thermal diodes based on phase-change materials...
Over the past decade, solid‐state thermal control devices have emerged as potential candidates for e...
The present work provides a thorough literature review of the main high temperature sensible and lat...
Here, the authors present a dual-mode solid state thermal rectification effect using a heterogeneous...
ABSTRACT: Active heat flow control is essential for broad applications of heating, cooling, and ener...
With the rapid evolution of power and packing densities of microelectronic and energy storage device...
This book presents a comprehensive introduction to the use of solid‐liquid phase change materials to...
We theoretically analyze two near-field thermal rectification devices: a radiative thermal diode and...
The phase change materials (PCM) are materials that can improve thermal energy storage and productio...
Solid-state thermal control devices that present an asymmetric heat flow depend-ing on thermal bias ...
Thermal diodes are devices that allow heat to flow preferentially in one direction. This unique ther...
Materials designed to undergo a phase transition at a prescribed temperature have been advanced as e...
We present a thermal rectification device concept based on far-field radiative exchange between two ...
Thermal control elements, i.e., thermal diodes, switches, and regulators, can control the heat flow ...
International audienceWe theoretically and comparatively study the performance of spherical and cyli...
The thermal rectification of conductive and radiative thermal diodes based on phase-change materials...
Over the past decade, solid‐state thermal control devices have emerged as potential candidates for e...
The present work provides a thorough literature review of the main high temperature sensible and lat...
Here, the authors present a dual-mode solid state thermal rectification effect using a heterogeneous...
ABSTRACT: Active heat flow control is essential for broad applications of heating, cooling, and ener...
With the rapid evolution of power and packing densities of microelectronic and energy storage device...
This book presents a comprehensive introduction to the use of solid‐liquid phase change materials to...
We theoretically analyze two near-field thermal rectification devices: a radiative thermal diode and...
The phase change materials (PCM) are materials that can improve thermal energy storage and productio...