A vibrotactile actuator and robotic gripper that operate based on the Lorentz force principle are demonstrated.

A vibrotactile actuator and robotic gripper that operate based on the Lorentz force principle are demonstrated.
Microrobots mimic the motion of living microorganisms to deliver target-specific therapeutics.
Check out the latest covers of Advanced Healthcare Materials!
A colloidal nanocrystal layer enables 2D to 3D shape transformations of “hard” inorganic materials.
Kawasaki announced the launch of a new robot system that reproduces the movements of expert engineers through remote collaboration.
This month’s Advanced Engineering Materials covers and top papers.
Researchers design a bio-inspired batoid robot from non-toxic hydrogels operated with Au microelectrodes.
Leoni has developed a new solution for attaching components and dresspacks to lightweight and collaborative robots.
This month’s Advanced Engineering Materials covers and top papers.
Researchers develop a liquid crystalline elastomer robot fueled completely by visible light. The robot is capable of biomimetic locomotion resembling a caterpillar and can be operated directly on human skin.