We investigate the general dependence of the thermal transport across nanoparticle–fluid interfaces using molecular dynamics computations. We show that the thermal conductance depends strongly both on the wetting characteristics of the nanoparticle–fluid interface and on the nanoparticle size. Strong nanoparticle–fluid interactions, leading to full wetting states in the host fluid, result in high thermal conductances and efficient interfacial transport of heat. Weak interactions result in partial drying or full drying states, and consistently low thermal conductances. The variation of the thermal conductance with particle size is found to depend on the fluid–nanoparticle interactions. Strong interactions coupled with large interfacial curv...
Nanoparticle suspensions in liquids have received great attention, as they may offer an approach to ...
Molecular dynamics simulations were performed to model the interfacial thermal conductance (<i>G</i>...
Nanofluids exhibit enhanced thermal conductivity superior to traditional heat transfer fluids. The c...
We investigate the general dependence of the thermal transport across nanoparticle–fluid interfaces ...
The Interfacial Thermal Conductance (ITC) is a fundamental property of materials and has particular ...
Liquid molecules located at the interfacial region behave differently than they do in the bu...
The developed model for thermal conductivity of nanofluids integrates the interfacial Kapitza resist...
Colloidal suspensions of nanoparticles (nanofluids) are materials of interest for thermal engineerin...
In a molecular dynamics study of water based nanofluids, we show that a hydration layer is formed at...
Thermal conductivity of interfacial layers is an essential parameter for determining how the ordered...
Nanofluids are becoming increasingly popular as heat transfer fluids in a variety of industrial appl...
The nanoscale properties of materials can have a great influence on their macroscopic behavior; for ...
Plasmonic nanoparticles, such as Au nanoparticles (NPs) coated with bio-compatible ligands, are larg...
International audienceUsing the Landauer-Buttiker theory we calculate the thermal conductance associ...
Nanofluids that consist of nanometer sized particles and fibers dispersed in base liquids have shown...
Nanoparticle suspensions in liquids have received great attention, as they may offer an approach to ...
Molecular dynamics simulations were performed to model the interfacial thermal conductance (<i>G</i>...
Nanofluids exhibit enhanced thermal conductivity superior to traditional heat transfer fluids. The c...
We investigate the general dependence of the thermal transport across nanoparticle–fluid interfaces ...
The Interfacial Thermal Conductance (ITC) is a fundamental property of materials and has particular ...
Liquid molecules located at the interfacial region behave differently than they do in the bu...
The developed model for thermal conductivity of nanofluids integrates the interfacial Kapitza resist...
Colloidal suspensions of nanoparticles (nanofluids) are materials of interest for thermal engineerin...
In a molecular dynamics study of water based nanofluids, we show that a hydration layer is formed at...
Thermal conductivity of interfacial layers is an essential parameter for determining how the ordered...
Nanofluids are becoming increasingly popular as heat transfer fluids in a variety of industrial appl...
The nanoscale properties of materials can have a great influence on their macroscopic behavior; for ...
Plasmonic nanoparticles, such as Au nanoparticles (NPs) coated with bio-compatible ligands, are larg...
International audienceUsing the Landauer-Buttiker theory we calculate the thermal conductance associ...
Nanofluids that consist of nanometer sized particles and fibers dispersed in base liquids have shown...
Nanoparticle suspensions in liquids have received great attention, as they may offer an approach to ...
Molecular dynamics simulations were performed to model the interfacial thermal conductance (<i>G</i>...
Nanofluids exhibit enhanced thermal conductivity superior to traditional heat transfer fluids. The c...