Arbitrary shape (re)programming is appealing for fabricating untethered shape-morphing photo-actuators with intricate configurations and features. We present re-programmable light-responsive thermoplastic actuators with arbitrary initial shapes through spray-coating of polyethylene terephthalate (PET) with an azobenzene-doped light-responsive liquid crystal network (LCN). The initial geometry of the actuator is controlled by thermally shaping and fixing the thermoplastic PET, allowing arbitrary shapes, including origami- like folds and left- and right-handed helicity within a single sample. The thermally fixed geometries can be reversibly actuated through light exposure, with fast, reversible area-specific actuation such as winding, unwindi...
Azobenzene liquid crystal polymers offer the potential to fabricate autonomously operated actuators ...
Chemical networks and molecular switches dominate the area of research geared toward macroscopic mot...
Soft matter elements undergoing programed, reversible shape change can contribute to fundamental adv...
Arbitrary shape (re)programming is appealing for fabricating, untethered shape‐morphing photo actuat...
The response of soft actuators made of stimuli-responsive materials can be phenomenologically descri...
We report on the fabrication of a rewritable and reprogrammable dual-photoresponsive liquid crystall...
A reconfigurable actuator is a stimuli-responsive structure that can be programmed to adapt differen...
Liquid crystal polymer networks (LCNs) lead the research geared toward macroscopic motion of materia...
The ability to obtain 3D polymeric objects by a 2D-to-3D shape-shifting method is very appealing for...
Liquid crystal networks doped with azobenzene molecular photo-switches have been commonly used as re...
Soft matter elements undergoing programed, reversible shape change can contribute to fundamental adv...
Azobenzene liquid crystal polymers offer the potential to fabricate autonomously operated actuators ...
Chemical networks and molecular switches dominate the area of research geared toward macroscopic mot...
Soft matter elements undergoing programed, reversible shape change can contribute to fundamental adv...
Arbitrary shape (re)programming is appealing for fabricating, untethered shape‐morphing photo actuat...
The response of soft actuators made of stimuli-responsive materials can be phenomenologically descri...
We report on the fabrication of a rewritable and reprogrammable dual-photoresponsive liquid crystall...
A reconfigurable actuator is a stimuli-responsive structure that can be programmed to adapt differen...
Liquid crystal polymer networks (LCNs) lead the research geared toward macroscopic motion of materia...
The ability to obtain 3D polymeric objects by a 2D-to-3D shape-shifting method is very appealing for...
Liquid crystal networks doped with azobenzene molecular photo-switches have been commonly used as re...
Soft matter elements undergoing programed, reversible shape change can contribute to fundamental adv...
Azobenzene liquid crystal polymers offer the potential to fabricate autonomously operated actuators ...
Chemical networks and molecular switches dominate the area of research geared toward macroscopic mot...
Soft matter elements undergoing programed, reversible shape change can contribute to fundamental adv...