Mobile microrobots with shape morphing capability show great advantages for conducting tasks in complex environments. Combination of magnetically driven locomotion and stimuli‐responsive shape morphing is an effective strategy to realize these microrobots. However, most existing microrobots fabricated by the combination strategy are of low locomotion efficiency due to the limited amount of magnetic material loaded. Herein, a novel scheme for coating the magnetic nanoparticles (NPs) on the surface of microrobot is proposed to increase the magnetic material loading amount. Theoretical analyses demonstrate that, below a critical size at microscale, surface coating NPs can load more magnetic material than embedding NPs into the volume due to th...
Creating reconfigurable and recyclable soft microrobots that can execute multimodal locomotion has b...
Creating reconfigurable and recyclable soft microrobots that can execute multimodal locomotion has b...
Creating reconfigurable and recyclable soft microrobots that can execute multimodal locomotion has b...
Researchers in biomedical applications have long had interest in the creation of smaller, softer, sa...
Flexible magnetic small-scale robots use patterned magnetization to achieve fast transformation into...
Flexible magnetic small-scale robots use patterned magnetization to achieve fast transformation into...
Microorganisms can move in complex media, respond to the environment and self-organize. The field of...
Microorganisms can move in complex media, respond to the environment and self-organize. The field of...
Microorganisms can move in complex media, respond to the environment and self-organize. The field of...
Soft-bodied magnetically actuated micro robots could be developed by including controlled dispersion...
Microorganisms can move in complex media, respond to the environment and self-organize. The field of...
Microorganisms can move in complex media, respond to the environment and self-organize. The field of...
In recent years, magnetic micro- and nanorobots have been developed and extensively used in many fie...
The ability to control microrobots by means of magnetic fields has become of increasing interest to ...
Magnetic micro- and nanorobots are promising candidates for the delivery of therapeutic agents in di...
Creating reconfigurable and recyclable soft microrobots that can execute multimodal locomotion has b...
Creating reconfigurable and recyclable soft microrobots that can execute multimodal locomotion has b...
Creating reconfigurable and recyclable soft microrobots that can execute multimodal locomotion has b...
Researchers in biomedical applications have long had interest in the creation of smaller, softer, sa...
Flexible magnetic small-scale robots use patterned magnetization to achieve fast transformation into...
Flexible magnetic small-scale robots use patterned magnetization to achieve fast transformation into...
Microorganisms can move in complex media, respond to the environment and self-organize. The field of...
Microorganisms can move in complex media, respond to the environment and self-organize. The field of...
Microorganisms can move in complex media, respond to the environment and self-organize. The field of...
Soft-bodied magnetically actuated micro robots could be developed by including controlled dispersion...
Microorganisms can move in complex media, respond to the environment and self-organize. The field of...
Microorganisms can move in complex media, respond to the environment and self-organize. The field of...
In recent years, magnetic micro- and nanorobots have been developed and extensively used in many fie...
The ability to control microrobots by means of magnetic fields has become of increasing interest to ...
Magnetic micro- and nanorobots are promising candidates for the delivery of therapeutic agents in di...
Creating reconfigurable and recyclable soft microrobots that can execute multimodal locomotion has b...
Creating reconfigurable and recyclable soft microrobots that can execute multimodal locomotion has b...
Creating reconfigurable and recyclable soft microrobots that can execute multimodal locomotion has b...