Responsive materials with functions of forming three-dimensional (3D) origami and/or kirigami structures have a broad range of applications in bioelectronics, metamaterials, microrobotics, and microelectromechanical (MEMS) systems. To realize such functions, building blocks of actuating components usually possess localized inhomogeneity so that they respond differently to external stimuli. Previous fabrication strategies lie in localizing nonswellable or less-swellable guest components in their swellable host polymers to reduce swelling ability. Herein, inspired by ice plant seed capsules, we report an opposite strategy of implanting swellable guest medium inside nonswellable host polymers to locally enhance the swelling inhomogeneity. Spec...
A simple approach to a patterned multidomain gel is reported, combining a pH-responsive low-molecula...
Many applications in tissue engineering, flexible electronics, and soft robotics call for approaches...
[[abstract]]Development of hydrogel-based actuators with programmable deformation is an important to...
Self-actuating materials capable of transforming between three-dimensional shapes have applications ...
The distribution of periodic patterns of materials with radial or bilateral symmetry is a universal ...
In this thesis, the topics around stimuli-responsive hydrogel actuators were discussed. In each proj...
Stimuli-responsive gels are vital components in the next generation of smart devices, which can sens...
Rapid fabricating and harnessing stimuli-responsive behaviors of microscale bio-compatible hydrogels...
Mimicking natural botanical/zoological systems has revolutionarily inspired four-dimensional (4D) hy...
An assembly of three-dimensional (3D) architectures with defined configurations has important applic...
Stimuli-responsive hydrogels have attracted much attention owing to the versatility of their program...
Materials that can mimic biological behavior by converting chemical energy to mechanical work under ...
Nature is full of life, which is driven by the numerous biochemical processes that occur in living o...
Shape-morphing hydrogels can be widely used to develop artificial muscles, reconfigurable biodevices...
Soft, stimulus-responsive 3D structures created from crosslinked poly(ionic liquid)s (PILs) have bee...
A simple approach to a patterned multidomain gel is reported, combining a pH-responsive low-molecula...
Many applications in tissue engineering, flexible electronics, and soft robotics call for approaches...
[[abstract]]Development of hydrogel-based actuators with programmable deformation is an important to...
Self-actuating materials capable of transforming between three-dimensional shapes have applications ...
The distribution of periodic patterns of materials with radial or bilateral symmetry is a universal ...
In this thesis, the topics around stimuli-responsive hydrogel actuators were discussed. In each proj...
Stimuli-responsive gels are vital components in the next generation of smart devices, which can sens...
Rapid fabricating and harnessing stimuli-responsive behaviors of microscale bio-compatible hydrogels...
Mimicking natural botanical/zoological systems has revolutionarily inspired four-dimensional (4D) hy...
An assembly of three-dimensional (3D) architectures with defined configurations has important applic...
Stimuli-responsive hydrogels have attracted much attention owing to the versatility of their program...
Materials that can mimic biological behavior by converting chemical energy to mechanical work under ...
Nature is full of life, which is driven by the numerous biochemical processes that occur in living o...
Shape-morphing hydrogels can be widely used to develop artificial muscles, reconfigurable biodevices...
Soft, stimulus-responsive 3D structures created from crosslinked poly(ionic liquid)s (PILs) have bee...
A simple approach to a patterned multidomain gel is reported, combining a pH-responsive low-molecula...
Many applications in tissue engineering, flexible electronics, and soft robotics call for approaches...
[[abstract]]Development of hydrogel-based actuators with programmable deformation is an important to...