Development of hydrogel-based actuators with programmable deformation is an important topic that arouses much attention in fundamental and applied research. Most of these actuators are nonbiodegradable or work under nonphysiological conditions. Herein, a temperature-responsive and biodegradable gelatin methacryloyl (GelMA)–poly(N-isopropylacrylamide) hydrogel (i.e., GN hydrogel) network was explored as the active layer of a bilayer actuator. Small-angle X-ray scattering (SAXS) revealed that the GN hydrogel formed a mesoglobular structure (∼230 Å) upon a thermally induced phase transition. Rheological data supported that the GN hydrogel possessed 3D printability and tunable mechanical properties. A bilayer hydrogel actuator composed of activ...
In this thesis, the topics around stimuli-responsive hydrogel actuators were discussed. In each proj...
Hydrogels capable of stimuli-responsive deformation are widely explored as intelligent actuators for...
As one of the most promising intelligent materials, polymeric hydrogel actuators could produce rever...
Development of hydrogel-based actuators with programmable deformation is an important topic that aro...
[[abstract]]Development of hydrogel-based actuators with programmable deformation is an important to...
Despite the rapid and great developments in the field of 3D hydrogel printing, a major ongoing chall...
Despite the rapid and great developments in the field of 3D hydrogel printing, a major ongoing chall...
Abstract Shape morphing of stimuli‐responsive composite hydrogels has received considerable attentio...
Inspired by nature, diverse biomimetic hydrogel actuators are fabricated and become one of the most ...
Hydrogels capable of stimuli-responsive deformation are widely explored as intelligent actuators for...
Many electronic actuators of different dimensions, such as motors, relays, pumps, and mixers, have e...
Controllable and miniaturised mechanical actuation is one of the main challenges facing various emer...
Hydrogels capable of stimuli-responsive deformation are widely explored as intelligent actuators for...
Hydrogel actuators that deform in response to external stimuli have promising applications in divers...
Fast recovery in a nonaqueous environment is a big challenge for hydrogel actuators. In this work, a...
In this thesis, the topics around stimuli-responsive hydrogel actuators were discussed. In each proj...
Hydrogels capable of stimuli-responsive deformation are widely explored as intelligent actuators for...
As one of the most promising intelligent materials, polymeric hydrogel actuators could produce rever...
Development of hydrogel-based actuators with programmable deformation is an important topic that aro...
[[abstract]]Development of hydrogel-based actuators with programmable deformation is an important to...
Despite the rapid and great developments in the field of 3D hydrogel printing, a major ongoing chall...
Despite the rapid and great developments in the field of 3D hydrogel printing, a major ongoing chall...
Abstract Shape morphing of stimuli‐responsive composite hydrogels has received considerable attentio...
Inspired by nature, diverse biomimetic hydrogel actuators are fabricated and become one of the most ...
Hydrogels capable of stimuli-responsive deformation are widely explored as intelligent actuators for...
Many electronic actuators of different dimensions, such as motors, relays, pumps, and mixers, have e...
Controllable and miniaturised mechanical actuation is one of the main challenges facing various emer...
Hydrogels capable of stimuli-responsive deformation are widely explored as intelligent actuators for...
Hydrogel actuators that deform in response to external stimuli have promising applications in divers...
Fast recovery in a nonaqueous environment is a big challenge for hydrogel actuators. In this work, a...
In this thesis, the topics around stimuli-responsive hydrogel actuators were discussed. In each proj...
Hydrogels capable of stimuli-responsive deformation are widely explored as intelligent actuators for...
As one of the most promising intelligent materials, polymeric hydrogel actuators could produce rever...