A humidity-responsive bilayer actuator has been developed that consists of an oriented polyamide-6 substrate and a liquid-crystalline polymer coating. The oriented substrate acts as an alignment layer for the liquid crystal. The liquid-crystalline polymer consists of a supramolecular network having hydrogen-bonded entities that, after activation with an alkaline solution, exhibit deformation in response to a change in humidity. The bending behavior of the bilayer actuator was analyzed, showing a large response to a change in the humidity
The integration of untethered, multi-stimuli responsive actuation into soft microrobotic devices is ...
The integration of untethered, multi-stimuli responsive actuation into soft microrobotic devices is ...
A facile method is presented that generates humidity-driven helical twisting in thin, oriented polya...
A humidity-responsive bilayer actuator has been developed that consists of an oriented polyamide-6 s...
By spraying liquid crystal mixtures onto stretched polyamide 6 (PA6) substrates, dual-responsive hea...
We show a versatile method for the preparation of a variety of humidity-responsive actuators based o...
We show a versatile method for the preparation of a variety of humidity-responsive actuators based o...
We report a bilayer of sodium alginate/polyvinylidene fluoride (SA/PVDF) that is chemically bonded t...
Developing shape-shifting materials requires combining the flexibility needed by shape-shifting prop...
International audienceReshaping of elongated organic crystals that can be used as semiconductors, wa...
Glassy polymeric actuators are described which reversibly deform in response to changes in pH and/or...
The use of stimuli-responsive polymers to produce environmentally responsive self-actuators continue...
The integration of untethered, multi-stimuli responsive actuation into soft microrobotic devices is ...
The integration of untethered, multi-stimuli responsive actuation into soft microrobotic devices is ...
A facile method is presented that generates humidity-driven helical twisting in thin, oriented polya...
A humidity-responsive bilayer actuator has been developed that consists of an oriented polyamide-6 s...
By spraying liquid crystal mixtures onto stretched polyamide 6 (PA6) substrates, dual-responsive hea...
We show a versatile method for the preparation of a variety of humidity-responsive actuators based o...
We show a versatile method for the preparation of a variety of humidity-responsive actuators based o...
We report a bilayer of sodium alginate/polyvinylidene fluoride (SA/PVDF) that is chemically bonded t...
Developing shape-shifting materials requires combining the flexibility needed by shape-shifting prop...
International audienceReshaping of elongated organic crystals that can be used as semiconductors, wa...
Glassy polymeric actuators are described which reversibly deform in response to changes in pH and/or...
The use of stimuli-responsive polymers to produce environmentally responsive self-actuators continue...
The integration of untethered, multi-stimuli responsive actuation into soft microrobotic devices is ...
The integration of untethered, multi-stimuli responsive actuation into soft microrobotic devices is ...
A facile method is presented that generates humidity-driven helical twisting in thin, oriented polya...