Stimulus-responsive hydrogels are an important member of smart materials owing to their reversibility, soft/wet properties, and biocompatibility, which have a wide range of applications in the field of intelligent actuations. However, poor mechanical property and complicated fabrication process limit their further applications. Herein, we report a light-responsive tissue paper/hydrogel composite actuator which was developed by combining inkjet-printed tissue paper with poly(N-isopropylacrylamide) (PNIPAM) hydrogel through simple in situ polymerization. Due to the high strength of natural tissue paper and the strong interaction within the interface of the bilayer structure, the mechanical property of the composite actuator was highly enhance...
This review discusses the currently available 3D printing approaches, design concepts, and material...
The possibility to shape stimulus-responsive optical polymers, especially hydrogels, by means of las...
A simple approach is described to fabricate reversible, thermally- and optically responsive actuator...
In this thesis, the topics around stimuli-responsive hydrogel actuators were discussed. In each proj...
Swelling-induced shape transformation has been widely investigated and applied to the design and fab...
ABSTRACT: Hydrogels actuators (HAs) that can reversibly respond to stimuli have applications in dive...
An effective approach to develop a novel macroscopic anisotropic bilayer hydrogel actuator with on-o...
Soft actuators based on hydrogel materials, which can convert light energy directly into mechanical ...
[[abstract]]Development of hydrogel-based actuators with programmable deformation is an important to...
Herein, we report near-infrared (NIR) light-driven shape-morphing of programmable MXene-containing a...
In recent years, smart/stimuli-responsive hydrogels have drawn tremendous attention for their varied...
Hydrogels actuators (HAs) that can reversibly respond to stimuli have applications in diverse fields...
Development of hydrogel-based actuators with programmable deformation is an important topic that aro...
Hydrogels capable of stimuli-responsive deformation are widely explored as intelligent actuators for...
Soft actuators have attracted extensive attention for promising applications in drug delivery, micro...
This review discusses the currently available 3D printing approaches, design concepts, and material...
The possibility to shape stimulus-responsive optical polymers, especially hydrogels, by means of las...
A simple approach is described to fabricate reversible, thermally- and optically responsive actuator...
In this thesis, the topics around stimuli-responsive hydrogel actuators were discussed. In each proj...
Swelling-induced shape transformation has been widely investigated and applied to the design and fab...
ABSTRACT: Hydrogels actuators (HAs) that can reversibly respond to stimuli have applications in dive...
An effective approach to develop a novel macroscopic anisotropic bilayer hydrogel actuator with on-o...
Soft actuators based on hydrogel materials, which can convert light energy directly into mechanical ...
[[abstract]]Development of hydrogel-based actuators with programmable deformation is an important to...
Herein, we report near-infrared (NIR) light-driven shape-morphing of programmable MXene-containing a...
In recent years, smart/stimuli-responsive hydrogels have drawn tremendous attention for their varied...
Hydrogels actuators (HAs) that can reversibly respond to stimuli have applications in diverse fields...
Development of hydrogel-based actuators with programmable deformation is an important topic that aro...
Hydrogels capable of stimuli-responsive deformation are widely explored as intelligent actuators for...
Soft actuators have attracted extensive attention for promising applications in drug delivery, micro...
This review discusses the currently available 3D printing approaches, design concepts, and material...
The possibility to shape stimulus-responsive optical polymers, especially hydrogels, by means of las...
A simple approach is described to fabricate reversible, thermally- and optically responsive actuator...