The ability to topographically structure and fast controllably actuate hydrogel in two and three dimensions is the key for their promising applications in soft robots, microfluidic valves, cell and drug delivery, and artificial muscles. Inspired by evaporation-induced concentration differentiation phenomenon in the production process of beancurd sheet, we introduce a facile one-step evaporation process to create laminated layer/porous layer heterogeneous structure within graphene oxide-clay-poly(<i>N</i>-isopropylacrylamide) hydrogel in vertical direction and pattern the heterogeneous structure in lateral direction to form tunable, fast, and robust hydrogel actuators. The laminated layer/porous layer architecture is highly stable and robus...
Facile preparation, rapid actuating, and versatile actions are great challenges in exploring new kin...
Development of hydrogel-based actuators with programmable deformation is an important topic that aro...
Many electronic actuators of different dimensions, such as motors, relays, pumps, and mixers, have e...
The ability to topographically structure and fast controllably actuate hydrogel in two and three dim...
Fast recovery in a nonaqueous environment is a big challenge for hydrogel actuators. In this work, a...
Smart hydrogel actuators with programmable anisotropic structures present fascinating prospects cons...
Hydrogel actuators displaying programmable shape transformations are particularly attractive for int...
In this thesis, the topics around stimuli-responsive hydrogel actuators were discussed. In each proj...
Responsive hydrogel actuators have promising applications in diverse fields. Most hydrogel actuators...
Polymer hydrogels mimic biological tissues and are suitable for future lifelike machines. However, t...
[[abstract]]Development of hydrogel-based actuators with programmable deformation is an important to...
Rapid and reversible actuation and shape memory effects are critical for biomimetic soft actuators b...
Hydrogel actuators that deform in response to external stimuli have promising applications in divers...
Facile preparation, rapid actuating, and versatile actions are great challenges in exploring new kin...
Development of hydrogel-based actuators with programmable deformation is an important topic that aro...
Many electronic actuators of different dimensions, such as motors, relays, pumps, and mixers, have e...
The ability to topographically structure and fast controllably actuate hydrogel in two and three dim...
Fast recovery in a nonaqueous environment is a big challenge for hydrogel actuators. In this work, a...
Smart hydrogel actuators with programmable anisotropic structures present fascinating prospects cons...
Hydrogel actuators displaying programmable shape transformations are particularly attractive for int...
In this thesis, the topics around stimuli-responsive hydrogel actuators were discussed. In each proj...
Responsive hydrogel actuators have promising applications in diverse fields. Most hydrogel actuators...
Polymer hydrogels mimic biological tissues and are suitable for future lifelike machines. However, t...
[[abstract]]Development of hydrogel-based actuators with programmable deformation is an important to...
Rapid and reversible actuation and shape memory effects are critical for biomimetic soft actuators b...
Hydrogel actuators that deform in response to external stimuli have promising applications in divers...
Facile preparation, rapid actuating, and versatile actions are great challenges in exploring new kin...
Development of hydrogel-based actuators with programmable deformation is an important topic that aro...
Many electronic actuators of different dimensions, such as motors, relays, pumps, and mixers, have e...