A simple approach is described to fabricate reversible, thermally- and optically responsive actuators utilizing composites of poly(N-isopropylacrylamide) (pNIPAM) loaded with single-walled carbon nanotubes. With nanotube loading at concentrations of 0.75 mg/mL, we demonstrate up to 5 times enhancement to the thermal response time of the nanotube-pNIPAM hydrogel actuators caused by the enhanced mass transport of water molecules. Additionally, we demonstrate the ability to obtain ultrafast near-infrared optical response in nanotube-pNIPAM hydrogels under laser excitation enabled by the strong absorption properties of nanotubes. The work opens the framework to design complex and programmable self-folding materials, such as cubes and flowers, w...
Stimulus-responsive hydrogels are an important member of smart materials owing to their reversibilit...
Biocompatible and conductive polymer hydrogels are the subject of intensive research in the bioengin...
Introducing multifunctional groups and inorganic material imparts xylan-based hydrogels with excelle...
This thesis develops and tests a novel microactuator system using carbon nanotubes (CNT) and poly(N-...
Smart materials initiate drastic physical property changes in response to external stimuli such as c...
Hydrogels capable of stimuli-responsive deformation are widely explored as intelligent actuators for...
Composite ionic-covalent entanglement (ICE) hydrogel networks were prepared from poly(N-isopropylacr...
The utilization of light to produce useful responses holds much potential for changing the world thr...
Hydrogels capable of stimuli-responsive deformation are widely explored as intelligent actuators for...
Biocompatible and conductive polymer hydrogels are the subject of intensive research in the bioengin...
Biocompatible and conductive polymer hydrogels are the subject of intensive research in the bioengin...
The locomotor behavior of creatures in nature can bring a lot of inspiration for the fabrication of ...
Hydrogels capable of stimuli-responsive deformation are widely explored as intelligent actuators for...
Carbon nanotube (CNT)-based materials allow for the direct conversion of light into heat and then in...
Novel near-infrared (NIR) light-responsive poly(<i>N</i>-isopropylacrylamide)/graphene oxide (PNIPA...
Stimulus-responsive hydrogels are an important member of smart materials owing to their reversibilit...
Biocompatible and conductive polymer hydrogels are the subject of intensive research in the bioengin...
Introducing multifunctional groups and inorganic material imparts xylan-based hydrogels with excelle...
This thesis develops and tests a novel microactuator system using carbon nanotubes (CNT) and poly(N-...
Smart materials initiate drastic physical property changes in response to external stimuli such as c...
Hydrogels capable of stimuli-responsive deformation are widely explored as intelligent actuators for...
Composite ionic-covalent entanglement (ICE) hydrogel networks were prepared from poly(N-isopropylacr...
The utilization of light to produce useful responses holds much potential for changing the world thr...
Hydrogels capable of stimuli-responsive deformation are widely explored as intelligent actuators for...
Biocompatible and conductive polymer hydrogels are the subject of intensive research in the bioengin...
Biocompatible and conductive polymer hydrogels are the subject of intensive research in the bioengin...
The locomotor behavior of creatures in nature can bring a lot of inspiration for the fabrication of ...
Hydrogels capable of stimuli-responsive deformation are widely explored as intelligent actuators for...
Carbon nanotube (CNT)-based materials allow for the direct conversion of light into heat and then in...
Novel near-infrared (NIR) light-responsive poly(<i>N</i>-isopropylacrylamide)/graphene oxide (PNIPA...
Stimulus-responsive hydrogels are an important member of smart materials owing to their reversibilit...
Biocompatible and conductive polymer hydrogels are the subject of intensive research in the bioengin...
Introducing multifunctional groups and inorganic material imparts xylan-based hydrogels with excelle...