International audienceThis work reports an innovative humidity-driven actuation concept based on conversion of chemical energy of adsorption/desorption using simple nanoporous sol-gel silica thin films as humidity-responsive materials. Bilayer-shaped actuators, consisting of a humidity-sensitive active nanostructured silica film deposited on a polymeric substrate (Kapton), were demonstrated as an original mean to convert water molecule adsorption and capillary condensation in usable mechanical work. Reversible solvation stress changes in silica micropores by water adsorption and energy produced by the rigid silica film contraction, induced by water capillary condensation in mesopores, were finely controlled and used as energy sources. The i...
Energy absorption behaviors of a surface-treated nanopo-rous silica gel are investigated through a p...
We report on the direct consequences of reversible water adsorption on the optical performance of si...
Biological systems have developed remarkable water-responsive (WR) structures that deform in respons...
International audienceThis work reports an innovative humidity-driven actuation concept based on con...
This work reports an innovative humidity-driven actuation concept based on conversion of chemical en...
Biomimetic actuators with rapid response speed, high sensitivity, and selectivity to external stimul...
This work dealt with the synthesis and characterization of mesoporous silica thin films. The synthes...
We use a soft templating approach in combination with evaporation induced self-assembly to prepare m...
Wettability-defined liquid infiltration into porous materials in nature and several industrial appli...
Water-responsive materials undergo reversible shape changes upon varying humidity levels. These mech...
We report the synthesis of cellulose membranes from balsa wood with an exceptionally high responsivi...
In this submission we fabricated a humidity-responsive polymer-based actuator by layering negatively...
The understanding and design of wetting-transport and wetting-charge-transport interplay in nanomete...
This is the author accepted manuscript. The final version is available from the American Chemical So...
Energy absorption behaviors of a surface-treated nanopo-rous silica gel are investigated through a p...
We report on the direct consequences of reversible water adsorption on the optical performance of si...
Biological systems have developed remarkable water-responsive (WR) structures that deform in respons...
International audienceThis work reports an innovative humidity-driven actuation concept based on con...
This work reports an innovative humidity-driven actuation concept based on conversion of chemical en...
Biomimetic actuators with rapid response speed, high sensitivity, and selectivity to external stimul...
This work dealt with the synthesis and characterization of mesoporous silica thin films. The synthes...
We use a soft templating approach in combination with evaporation induced self-assembly to prepare m...
Wettability-defined liquid infiltration into porous materials in nature and several industrial appli...
Water-responsive materials undergo reversible shape changes upon varying humidity levels. These mech...
We report the synthesis of cellulose membranes from balsa wood with an exceptionally high responsivi...
In this submission we fabricated a humidity-responsive polymer-based actuator by layering negatively...
The understanding and design of wetting-transport and wetting-charge-transport interplay in nanomete...
This is the author accepted manuscript. The final version is available from the American Chemical So...
Energy absorption behaviors of a surface-treated nanopo-rous silica gel are investigated through a p...
We report on the direct consequences of reversible water adsorption on the optical performance of si...
Biological systems have developed remarkable water-responsive (WR) structures that deform in respons...