The Interfacial Thermal Conductance (ITC) is a fundamental property of materials and has particular relevance at the nanoscale. The ITC quantifies the thermal resistance between materials of different compositions or between fluids in contact with materials. Furthermore, the ITC determines the rate of cooling/heating of the materials and the temperature drop across the interface. Here, we propose a method to compute local ITCs and temperature drops of nanoparticle–fluid interfaces. Our approach resolves the ITC at the atomic level using the atomic coordinates of the nanomaterial as nodes to compute local thermal transport properties. We obtain high-resolution descriptions of the interfacial thermal transport by combining the atomistic nodal...
A diverse spectrum of technology drivers such as improved thermal barriers, higher efficiency thermo...
Nanofluids that consist of nanometer sized particles and fibers dispersed in base liquids have shown...
Plasmonic nanoparticles, such as Au nanoparticles (NPs) coated with bio-compatible ligands, are larg...
We investigate the general dependence of the thermal transport across nanoparticle–fluid interfaces ...
We investigate the general dependence of the thermal transport across nanoparticle–fluid interfaces ...
Molecular dynamics simulations were performed to model the interfacial thermal conductance (<i>G</i>...
The nanoscale properties of materials can have a great influence on their macroscopic behavior; for ...
We compute the thermal conductance between two nanoparticles in contact based on the Molecular Dynam...
Rapid progress in the synthesis and processing of materials with structure on nanometer length scale...
Thermal conductivity of interfacial layers is an essential parameter for determining how the ordered...
Interfacial thermal conductance (ITC) quantifies heat transport across material-fluid interfaces. It...
Non-equilibrium molecular dynamics simulations have expanded our ability to investigate interfacial ...
Liquid molecules located at the interfacial region behave differently than they do in the bu...
A diverse spectrum of technology drivers such as improved thermal barriers, higher efficiency thermo...
Janus nanoparticles (JNPs) feature heterogeneous compositions, bringing opportunities in technologic...
A diverse spectrum of technology drivers such as improved thermal barriers, higher efficiency thermo...
Nanofluids that consist of nanometer sized particles and fibers dispersed in base liquids have shown...
Plasmonic nanoparticles, such as Au nanoparticles (NPs) coated with bio-compatible ligands, are larg...
We investigate the general dependence of the thermal transport across nanoparticle–fluid interfaces ...
We investigate the general dependence of the thermal transport across nanoparticle–fluid interfaces ...
Molecular dynamics simulations were performed to model the interfacial thermal conductance (<i>G</i>...
The nanoscale properties of materials can have a great influence on their macroscopic behavior; for ...
We compute the thermal conductance between two nanoparticles in contact based on the Molecular Dynam...
Rapid progress in the synthesis and processing of materials with structure on nanometer length scale...
Thermal conductivity of interfacial layers is an essential parameter for determining how the ordered...
Interfacial thermal conductance (ITC) quantifies heat transport across material-fluid interfaces. It...
Non-equilibrium molecular dynamics simulations have expanded our ability to investigate interfacial ...
Liquid molecules located at the interfacial region behave differently than they do in the bu...
A diverse spectrum of technology drivers such as improved thermal barriers, higher efficiency thermo...
Janus nanoparticles (JNPs) feature heterogeneous compositions, bringing opportunities in technologic...
A diverse spectrum of technology drivers such as improved thermal barriers, higher efficiency thermo...
Nanofluids that consist of nanometer sized particles and fibers dispersed in base liquids have shown...
Plasmonic nanoparticles, such as Au nanoparticles (NPs) coated with bio-compatible ligands, are larg...