In a system containing nanoporous materials and liquids, the well-known thermo-capillary effect can be amplified by the ultralarge specific surface area of the nanopores. With appropriate temperature change, the relative wetting-dewetting transition can cause the liquid to flow in or out of the nanopores, and part of the thermal energy is converted to significant mechanical output. A conceptual design of such a thermal actuation/energy conversion/storage system is investigated in this paper, whose working mechanism, i.e. the thermally dependent infiltration behaviors of liquids into nanopores, is analyzed using molecular dynamics simulations. The fundamental molecular characteristics, including the density profile, contact angle, and surfac...
International audienceUnderstanding the effect of liquid viscosity in nanoconfinement is of paramoun...
International audienceUnderstanding the effect of liquid viscosity in nanoconfinement is of paramoun...
Nanoporous materials are involved in many industrial processes such as catalysis, filtration, chroma...
In a system containing nanoporous materials and liquids, the well-known thermo-capillary effect can ...
A fundamental understanding of the thermal effects on nanofluid behaviors is critical for developing...
Conventional thermoelectric materials have limited capability of scavenging electrical energy from l...
In the nanoscale, fluid motion is quite different from that in macroscale systems due to the high su...
Thermally induced variation in wetting ability in a confined nanoenvironment, indicated by the chang...
When a nonwetting fluid is forced to infiltrate a hydrophobic nanoporous solid, the external mechani...
The emerging subject of nanofluidics, where solids and fluids interact closely at the nanoscale, has...
We propose the conceptual design of an electrically controlled actuation system by adjusting the rel...
Understanding the temperature-dependent nanofluidic transport behavior is critical for developing th...
Understanding the effect of liquid viscosity in nanoconfinement is of paramount importance from both...
Understanding the effect of liquid viscosity in nanoconfinement is of paramount importance from both...
International audienceUnderstanding the effect of liquid viscosity in nanoconfinement is of paramoun...
International audienceUnderstanding the effect of liquid viscosity in nanoconfinement is of paramoun...
International audienceUnderstanding the effect of liquid viscosity in nanoconfinement is of paramoun...
Nanoporous materials are involved in many industrial processes such as catalysis, filtration, chroma...
In a system containing nanoporous materials and liquids, the well-known thermo-capillary effect can ...
A fundamental understanding of the thermal effects on nanofluid behaviors is critical for developing...
Conventional thermoelectric materials have limited capability of scavenging electrical energy from l...
In the nanoscale, fluid motion is quite different from that in macroscale systems due to the high su...
Thermally induced variation in wetting ability in a confined nanoenvironment, indicated by the chang...
When a nonwetting fluid is forced to infiltrate a hydrophobic nanoporous solid, the external mechani...
The emerging subject of nanofluidics, where solids and fluids interact closely at the nanoscale, has...
We propose the conceptual design of an electrically controlled actuation system by adjusting the rel...
Understanding the temperature-dependent nanofluidic transport behavior is critical for developing th...
Understanding the effect of liquid viscosity in nanoconfinement is of paramount importance from both...
Understanding the effect of liquid viscosity in nanoconfinement is of paramount importance from both...
International audienceUnderstanding the effect of liquid viscosity in nanoconfinement is of paramoun...
International audienceUnderstanding the effect of liquid viscosity in nanoconfinement is of paramoun...
International audienceUnderstanding the effect of liquid viscosity in nanoconfinement is of paramoun...
Nanoporous materials are involved in many industrial processes such as catalysis, filtration, chroma...