Soft robots have great potential applications in manufacturing, disaster rescue, medical treatment, etc. Artificial muscle is one of the most important components of a soft robot. In previous years, hydrogel actuators that can be controllably deformed by the stimuli of external signals have been developed as good candidates for muscle-like materials. In this article, we successfully prepared a chemical fuel-driven self-resettable bilayer hydrogel actuator mimicking natural muscles with the aid of a new negative feedback reaction network. The actuator can temporarily deform upon the addition of H+ (chemical fuel). Subsequently, H+ accelerated the reaction between BrO3– and Fe(CN)64–, which consume H+. It resulted in the spontaneous recovery ...
The expense and use of non-recyclable materials often requires the retrieval and recovery of explora...
Chemically induced actuation of a polypyrrole (Ppy) artificial muscle was controlled by biocatalytic...
Nature has inspired a new generation of robots that not only imitate the behavior of natural systems...
The movements of soft living tissues, such as muscle, have sparked a strong interest in the design o...
Many electronic actuators of different dimensions, such as motors, relays, pumps, and mixers, have e...
Most soft actuators have the ability of monotonic responsiveness. That is, there is only one respons...
The principle of control signal amplification is found in all actuation systems, from engineered dev...
In this thesis, the topics around stimuli-responsive hydrogel actuators were discussed. In each proj...
Many kinds of stimuli-responsive polymer and gels have been developed and applied to biomimetic actu...
Soft robotics is a rapidly evolving research field that focuses on developing robots with bioinspire...
Stimuli-responsive hydrogels have large deformability but-when applied as actuators, smart switch, a...
We consider the embodiment of a microbial fuel cell using artificial muscle actuators. The microbial...
Novel artificial muscle materials were developed, which can be electrically actuated at near neutral...
The expense and use of non-recyclable materials often requires the retrieval and recovery of explora...
Chemically induced actuation of a polypyrrole (Ppy) artificial muscle was controlled by biocatalytic...
Nature has inspired a new generation of robots that not only imitate the behavior of natural systems...
The movements of soft living tissues, such as muscle, have sparked a strong interest in the design o...
Many electronic actuators of different dimensions, such as motors, relays, pumps, and mixers, have e...
Most soft actuators have the ability of monotonic responsiveness. That is, there is only one respons...
The principle of control signal amplification is found in all actuation systems, from engineered dev...
In this thesis, the topics around stimuli-responsive hydrogel actuators were discussed. In each proj...
Many kinds of stimuli-responsive polymer and gels have been developed and applied to biomimetic actu...
Soft robotics is a rapidly evolving research field that focuses on developing robots with bioinspire...
Stimuli-responsive hydrogels have large deformability but-when applied as actuators, smart switch, a...
We consider the embodiment of a microbial fuel cell using artificial muscle actuators. The microbial...
Novel artificial muscle materials were developed, which can be electrically actuated at near neutral...
The expense and use of non-recyclable materials often requires the retrieval and recovery of explora...
Chemically induced actuation of a polypyrrole (Ppy) artificial muscle was controlled by biocatalytic...
Nature has inspired a new generation of robots that not only imitate the behavior of natural systems...