This paper demonstrates a unique way of creating heterogeneous layered structures of soft functional materials for advanced transducer applications. Hydrogel droplets with different composites were patterned by a “two-parallel plate” configuration used in microfluidics applications. Resulted heterogeneous layered structures of hydrogel were created, generating reconfigurable 3D (3-dimensional) deformation responding to discrete levels of stimulation inputs
In this thesis, the topics around stimuli-responsive hydrogel actuators were discussed. In each proj...
A hydrogel is a crosslinked network of polymer chains swollen by water. When immersed in an aqueous ...
This review discusses the currently available 3D printing approaches, design concepts, and material...
This paper demonstrates a unique way of creating heterogeneous layered structures of soft functional...
Inspired by shape-morphing organisms in nature, researchers have developed various hydrogels with st...
Unique functions of living organisms in nature inspire a broad spectrum of engineering systems. Sinc...
Freely swelling, three-dimensionally patterned responsive hydrogels fabricated by multiphoton lithog...
In recent years, smart/stimuli-responsive hydrogels have drawn tremendous attention for their varied...
Shape deformation hydrogels, which are one of the most promising and essential classes of stimuli-re...
Environmentally sensitive hydrogels are three-dimensional crosslinked polymer networks capable of un...
Ionoprinting has proven itself as a technique capable of enabling repeated post-synthesis programmin...
Multimaterial additive manufacturing or three-dimensional (3D) printing of hydrogel structures provi...
Responsive hydrogels that undergo controlled shape changes in response to a range of stimuli are of...
Hydrogels are soft polymers comprising of a three-dimensional network capable of absorbing significa...
Hydrogels, i.e., water-swollen polymer networks, have been studied and utilized for decades. These m...
In this thesis, the topics around stimuli-responsive hydrogel actuators were discussed. In each proj...
A hydrogel is a crosslinked network of polymer chains swollen by water. When immersed in an aqueous ...
This review discusses the currently available 3D printing approaches, design concepts, and material...
This paper demonstrates a unique way of creating heterogeneous layered structures of soft functional...
Inspired by shape-morphing organisms in nature, researchers have developed various hydrogels with st...
Unique functions of living organisms in nature inspire a broad spectrum of engineering systems. Sinc...
Freely swelling, three-dimensionally patterned responsive hydrogels fabricated by multiphoton lithog...
In recent years, smart/stimuli-responsive hydrogels have drawn tremendous attention for their varied...
Shape deformation hydrogels, which are one of the most promising and essential classes of stimuli-re...
Environmentally sensitive hydrogels are three-dimensional crosslinked polymer networks capable of un...
Ionoprinting has proven itself as a technique capable of enabling repeated post-synthesis programmin...
Multimaterial additive manufacturing or three-dimensional (3D) printing of hydrogel structures provi...
Responsive hydrogels that undergo controlled shape changes in response to a range of stimuli are of...
Hydrogels are soft polymers comprising of a three-dimensional network capable of absorbing significa...
Hydrogels, i.e., water-swollen polymer networks, have been studied and utilized for decades. These m...
In this thesis, the topics around stimuli-responsive hydrogel actuators were discussed. In each proj...
A hydrogel is a crosslinked network of polymer chains swollen by water. When immersed in an aqueous ...
This review discusses the currently available 3D printing approaches, design concepts, and material...