Stimuli-sensitive hydrogels have received attention because of their potential applications in various fields. Stimuli-directed motion offers many practical applications, such as in drug delivery systems and actuators. Directed motion of asymmetric hydrogels has long been designed; however, few studies have investigated the motion control of symmetric hydrogels. We designed a pine cone scale-inspired movable temperature-sensitive symmetric hydrogel that contains Fe3O4. Alignment of Fe3O4 along the magnetic force is key in motion control in which Fe3O4 acts like fibers in a pine cone scale. Although a homogeneous temperature-sensitive hydrogel cannot respond to a temperature gradient, the Fe3O4-containing hydrogel demonstrates considerable b...
A hydrogel is a crosslinked network of polymer chains swollen by water. When immersed in an aqueous ...
Shape deformation hydrogels, which are one of the most promising and essential classes of stimuli-re...
Hydrogels are biocompatible soft materials that resemble biological tissues more than any other mate...
Stimuli-sensitive hydrogels have been intensively studied because of their potential applications in...
Stimuli-sensitive hydrogels have been intensively studied because of their potential applications in...
Inspired by shape-morphing organisms in nature, researchers have developed various hydrogels with st...
Living multicellular organisms comprise a high degree of soft anisotropic tissues but the developmen...
Stimuli-responsive hydrogels undergo large shape change in response to a wide variety of stimuli, su...
Magnetic hydrogel actuators have promising applications in soft robots, wastewater treatment, and un...
Materials found in nature frequently show an ability to change their shape or external morphology un...
Shape-changing hydrogel material has numerous potential applications in biomimetics, soft robotics, ...
Inspired by nature, diverse biomimetic hydrogel actuators are fabricated and become one of the most ...
DoctorMost previous studies have investigated the motile mechanism of plants from a biochemical pers...
Origami metamaterial has gradually shown its potential in the fields of science and engineering due ...
Recently, additive manufacturing of fiber-reinforced composite hydrogels has been used to create sel...
A hydrogel is a crosslinked network of polymer chains swollen by water. When immersed in an aqueous ...
Shape deformation hydrogels, which are one of the most promising and essential classes of stimuli-re...
Hydrogels are biocompatible soft materials that resemble biological tissues more than any other mate...
Stimuli-sensitive hydrogels have been intensively studied because of their potential applications in...
Stimuli-sensitive hydrogels have been intensively studied because of their potential applications in...
Inspired by shape-morphing organisms in nature, researchers have developed various hydrogels with st...
Living multicellular organisms comprise a high degree of soft anisotropic tissues but the developmen...
Stimuli-responsive hydrogels undergo large shape change in response to a wide variety of stimuli, su...
Magnetic hydrogel actuators have promising applications in soft robots, wastewater treatment, and un...
Materials found in nature frequently show an ability to change their shape or external morphology un...
Shape-changing hydrogel material has numerous potential applications in biomimetics, soft robotics, ...
Inspired by nature, diverse biomimetic hydrogel actuators are fabricated and become one of the most ...
DoctorMost previous studies have investigated the motile mechanism of plants from a biochemical pers...
Origami metamaterial has gradually shown its potential in the fields of science and engineering due ...
Recently, additive manufacturing of fiber-reinforced composite hydrogels has been used to create sel...
A hydrogel is a crosslinked network of polymer chains swollen by water. When immersed in an aqueous ...
Shape deformation hydrogels, which are one of the most promising and essential classes of stimuli-re...
Hydrogels are biocompatible soft materials that resemble biological tissues more than any other mate...