Recent research of hydrogel actuators is still not sophisticated enough to meet the requirement of fast, reversible, complex, and robust reconfiguration. Here, we present a new kind of poly(<i>N</i>-isopropylacrylamide)/graphene oxide gradient hydrogel by utilizing direct current electric field to induce gradient and oriented distribution of graphene oxide into poly(<i>N</i>-isopropylacrylamide) hydrogel. Upon near-infrared light irradiation, the hydrogel exhibited excellent comprehensive actuation performance as a result of directional bending deformation, promising great potential in the application of soft actuators and optomechanical system
Temperature-responsive Poly-N-isopropylacrylamide (PNIPAAm) hydrogels were modified with graphene ox...
ABSTRACT: Hydrogels actuators (HAs) that can reversibly respond to stimuli have applications in dive...
Soft actuators based on hydrogel materials, which can convert light energy directly into mechanical ...
Herein, we report near-infrared (NIR) light-driven shape-morphing of programmable MXene-containing a...
Abstract Shape morphing of stimuli‐responsive composite hydrogels has received considerable attentio...
Hydrogels are biocompatible soft materials that resemble biological tissues more than any other mate...
Poly(N-isopropylacrylamide) (PNIPAAm) hydrogel films with incorporated graphene oxide (GO) were deve...
An effective approach to develop a novel macroscopic anisotropic bilayer hydrogel actuator with on-o...
Inspired by the shape deformations of plants with inhomogeneous structures, more and more attention ...
Hydrogels capable of stimuli-responsive deformation are widely explored as intelligent actuators for...
Hydrogels capable of stimuli-responsive deformation are widely explored as intelligent actuators for...
The method of converting insulating polymers into conducting 3D porous graphene structures, so-calle...
Hydrogels capable of stimuli-responsive deformation are widely explored as intelligent actuators for...
Conjugated polymers are commonly adopted to develop electro- and photoresponsive materials due to th...
In this thesis, the topics around stimuli-responsive hydrogel actuators were discussed. In each proj...
Temperature-responsive Poly-N-isopropylacrylamide (PNIPAAm) hydrogels were modified with graphene ox...
ABSTRACT: Hydrogels actuators (HAs) that can reversibly respond to stimuli have applications in dive...
Soft actuators based on hydrogel materials, which can convert light energy directly into mechanical ...
Herein, we report near-infrared (NIR) light-driven shape-morphing of programmable MXene-containing a...
Abstract Shape morphing of stimuli‐responsive composite hydrogels has received considerable attentio...
Hydrogels are biocompatible soft materials that resemble biological tissues more than any other mate...
Poly(N-isopropylacrylamide) (PNIPAAm) hydrogel films with incorporated graphene oxide (GO) were deve...
An effective approach to develop a novel macroscopic anisotropic bilayer hydrogel actuator with on-o...
Inspired by the shape deformations of plants with inhomogeneous structures, more and more attention ...
Hydrogels capable of stimuli-responsive deformation are widely explored as intelligent actuators for...
Hydrogels capable of stimuli-responsive deformation are widely explored as intelligent actuators for...
The method of converting insulating polymers into conducting 3D porous graphene structures, so-calle...
Hydrogels capable of stimuli-responsive deformation are widely explored as intelligent actuators for...
Conjugated polymers are commonly adopted to develop electro- and photoresponsive materials due to th...
In this thesis, the topics around stimuli-responsive hydrogel actuators were discussed. In each proj...
Temperature-responsive Poly-N-isopropylacrylamide (PNIPAAm) hydrogels were modified with graphene ox...
ABSTRACT: Hydrogels actuators (HAs) that can reversibly respond to stimuli have applications in dive...
Soft actuators based on hydrogel materials, which can convert light energy directly into mechanical ...