Swelling-induced shape transformation has been widely investigated and applied to the design and fabrication of smart polymer devices, such as soft robotics, biomedical devices, and origami patterns. Previous shape-shifting designs using soft hydrogels have several limitations, including relatively small actuation force, slow responsive speed, and relatively complicated fabrication process. In this paper, we develop a novel hydrophilic/hydrophobic composite structure by using photopolymers. The rubbery nature of the materials used in this composite provides desirable actuation speed and actuation force. The photocurable polymer system could be easily patterned by using the digital light processing technique. Experiments and theoretical anal...
Biological structures in nature are made out of components which respond to external cues present in...
Materials that can be actuated by external stimuli are of particular interest for the manufacturing ...
Electroactive hydrogels (EAH) that exhibit large deformation in response to an electric field have r...
Swelling-induced shape transformation has been widely investigated and applied to the design and fab...
Inspired by shape-morphing organisms in nature, researchers have developed various hydrogels with st...
Stimulus-responsive hydrogels are an important member of smart materials owing to their reversibilit...
Soft actuators that exhibit large deformation and can move at a fast speed in response to external s...
Abstract Stimuli-responsive shape-changing hydrogels are attractive candidates for use as underwater...
Soft robotics is a promising new field offering robot systems that mimic the versatility and complex...
Soft actuators have attracted extensive attention for promising applications in drug delivery, micro...
Hydrogels are biocompatible soft materials that resemble biological tissues more than any other mate...
Inspired by nature, diverse biomimetic hydrogel actuators are fabricated and become one of the most ...
In this thesis, the topics around stimuli-responsive hydrogel actuators were discussed. In each proj...
Origami metamaterial has gradually shown its potential in the fields of science and engineering due ...
Shape deformation hydrogels, which are one of the most promising and essential classes of stimuli-re...
Biological structures in nature are made out of components which respond to external cues present in...
Materials that can be actuated by external stimuli are of particular interest for the manufacturing ...
Electroactive hydrogels (EAH) that exhibit large deformation in response to an electric field have r...
Swelling-induced shape transformation has been widely investigated and applied to the design and fab...
Inspired by shape-morphing organisms in nature, researchers have developed various hydrogels with st...
Stimulus-responsive hydrogels are an important member of smart materials owing to their reversibilit...
Soft actuators that exhibit large deformation and can move at a fast speed in response to external s...
Abstract Stimuli-responsive shape-changing hydrogels are attractive candidates for use as underwater...
Soft robotics is a promising new field offering robot systems that mimic the versatility and complex...
Soft actuators have attracted extensive attention for promising applications in drug delivery, micro...
Hydrogels are biocompatible soft materials that resemble biological tissues more than any other mate...
Inspired by nature, diverse biomimetic hydrogel actuators are fabricated and become one of the most ...
In this thesis, the topics around stimuli-responsive hydrogel actuators were discussed. In each proj...
Origami metamaterial has gradually shown its potential in the fields of science and engineering due ...
Shape deformation hydrogels, which are one of the most promising and essential classes of stimuli-re...
Biological structures in nature are made out of components which respond to external cues present in...
Materials that can be actuated by external stimuli are of particular interest for the manufacturing ...
Electroactive hydrogels (EAH) that exhibit large deformation in response to an electric field have r...