The concept of thermal rectification was put forward decades ago. It is a phenomenon in which the heat flux along one direction varies as the sign of temperature gradient changes. In bulk materials, thermal rectification has been realized at contact interfaces by manufacturing asymmetric effective contact areas, electron transport, temperature dependence of thermal conductivity and so on. The mechanism of thermal rectification has been studied intensively by using both experimental and theoretical methods. In recent years, with the rapid development of nanoscience and technology, the active control and management of heat transport at the nanoscale has become an important task and has attracted much attention. As the most fundamental compone...
In recent years, nanoscale synthesis and processing of materials are developing rapidly. The scienti...
Classical molecular dynamics based on the Brenner potential and Nos,-Hoover thermostat has been used...
Heat transfer laws for conduction, radiation and convection change when the dimensions of the system...
Thermal rectification is a phenomenon in which thermal transport along a specific axis is dependent ...
Thermal rectification is a phenomenon in which transport is preferred in one direction over the oppo...
Abstract—Thermal rectification is a phenomenon in which thermal transport is preferred in one direct...
The precise guidance of heat from one specific location to another is paramount in many industrial a...
In conclusion, the analysis and measurement of thermal properties are crucial for a wide range of ap...
Heterogeneous nanostructures involve nanoscale interfaces with different materials components, such ...
Thermal rectification is a physical phenomenon where the resistance to heat flow is dependent on the...
Herein we served non-equilibrium molecular dynamics (NEMD) approach to simulate thermal rectificatio...
In recent years, nanoscale synthesis and processing of materials are developing rapidly. The scienti...
In recent years, nanoscale synthesis and processing of materials are developing rapidly. The scienti...
International audiencePractical applications of heat transport control with artificial metamaterials...
The purpose of this research is an investigation of the thermal conductivity () and thermal rectific...
In recent years, nanoscale synthesis and processing of materials are developing rapidly. The scienti...
Classical molecular dynamics based on the Brenner potential and Nos,-Hoover thermostat has been used...
Heat transfer laws for conduction, radiation and convection change when the dimensions of the system...
Thermal rectification is a phenomenon in which thermal transport along a specific axis is dependent ...
Thermal rectification is a phenomenon in which transport is preferred in one direction over the oppo...
Abstract—Thermal rectification is a phenomenon in which thermal transport is preferred in one direct...
The precise guidance of heat from one specific location to another is paramount in many industrial a...
In conclusion, the analysis and measurement of thermal properties are crucial for a wide range of ap...
Heterogeneous nanostructures involve nanoscale interfaces with different materials components, such ...
Thermal rectification is a physical phenomenon where the resistance to heat flow is dependent on the...
Herein we served non-equilibrium molecular dynamics (NEMD) approach to simulate thermal rectificatio...
In recent years, nanoscale synthesis and processing of materials are developing rapidly. The scienti...
In recent years, nanoscale synthesis and processing of materials are developing rapidly. The scienti...
International audiencePractical applications of heat transport control with artificial metamaterials...
The purpose of this research is an investigation of the thermal conductivity () and thermal rectific...
In recent years, nanoscale synthesis and processing of materials are developing rapidly. The scienti...
Classical molecular dynamics based on the Brenner potential and Nos,-Hoover thermostat has been used...
Heat transfer laws for conduction, radiation and convection change when the dimensions of the system...