Non-reciprocal motions are a sequence of movements exhibiting time-reversal asymmetry. Such movements are common among various natural species, being adopted as a typical strategy for achieving efficient locomotion. Generally, the realization of non-reciprocal motions in man-made robotic devices requires synchronous control of at least two individual actuators, hence posing challenges to soft micro-robotics where the miniaturization limits integration of different mechanical components and the possibility of using onboard batteries. Here, we introduce general concepts for achieving non-reciprocal movements in wirelessly controlled soft actuators made of photomechanically responsive liquid crystal networks. The monolithic actuators are compo...
Actuation remains a significant challenge in soft robotics. Actuation by light has important advanta...
Recent efforts in stimuli-responsive soft materials have enabled wirelessly controlled actuation wit...
Microorganisms move in challenging environments by periodic changes in body shape. In contrast, curr...
Light responsive liquid crystalline networks were prepared by photopolymerization of azobenzene-dope...
\u3cp\u3eChemical networks and molecular switches dominate the area of research geared toward macros...
Chemical networks and molecular switches dominate the area of research geared toward macroscopic mot...
The response of soft actuators made of stimuli-responsive materials can be phenomenologically descri...
For decades, roboticists have focused their efforts on rigid systems that enable programmable, autom...
Mobile microscale devices and microrobots can be powered by catalytic reactions (chemical micromotor...
Microorganisms move in challenging environments by periodic changes in body shape. In contrast, curr...
Living cilia stir, sweep and steer via swirling strokes of complex bending and twisting, paired with...
Actuation remains a signifcant challenge in soft robotics. Actuation by light has important advantag...
A reconfigurable actuator is a stimuli-responsive structure that can be programmed to adapt differen...
Actuation remains a significant challenge in soft robotics. Actuation by light has important advanta...
Recent efforts in stimuli-responsive soft materials have enabled wirelessly controlled actuation wit...
Microorganisms move in challenging environments by periodic changes in body shape. In contrast, curr...
Light responsive liquid crystalline networks were prepared by photopolymerization of azobenzene-dope...
\u3cp\u3eChemical networks and molecular switches dominate the area of research geared toward macros...
Chemical networks and molecular switches dominate the area of research geared toward macroscopic mot...
The response of soft actuators made of stimuli-responsive materials can be phenomenologically descri...
For decades, roboticists have focused their efforts on rigid systems that enable programmable, autom...
Mobile microscale devices and microrobots can be powered by catalytic reactions (chemical micromotor...
Microorganisms move in challenging environments by periodic changes in body shape. In contrast, curr...
Living cilia stir, sweep and steer via swirling strokes of complex bending and twisting, paired with...
Actuation remains a signifcant challenge in soft robotics. Actuation by light has important advantag...
A reconfigurable actuator is a stimuli-responsive structure that can be programmed to adapt differen...
Actuation remains a significant challenge in soft robotics. Actuation by light has important advanta...
Recent efforts in stimuli-responsive soft materials have enabled wirelessly controlled actuation wit...
Microorganisms move in challenging environments by periodic changes in body shape. In contrast, curr...