Related Experiment Video
Updated: Sep 8, 2026

Bioinspired Soft Robot with Incorporated Microelectrodes
Published on: February 28, 2020
Amphibious Movement of Microrobots Inspired by Water Spiders
Xiao Hu1,2, Run Ouyang1, Zhuhao Shi1
1Key Laboratory of Fluid Transmission Technology of Zhejiang Province, Zhejiang Sci-Tech University, Hangzhou, Zhejiang, People's Republic of China.
Abstract:
Magnetic actuation provides an effective means for tetherless control of microrobots in complex environments. Inspired by the morphology and interfacial flotation mechanism of water striders, we design a four-legged microrobot with small ribs on its feet to mimic the structure of water striders. Through an asymmetric magnetic response between its poles inside four legs, two bio-inspired motion modes and three extended modes are controlled by the magnetic field during complex amphibious locomotion. The microrobot can generate vortices for locomotion on the air-water interface like water striders; it also keeps the non-contact cargo-capturing and transporting capacity with the Rotate motion mode. When switched to the Swing mode, the microrobot can overcome surface tension and enter the liquid interior. In a liquid environment, the microrobot can keep continuous lateral oscillations like water striders; it breaks flow field symmetry to generate vertical displacement. Besides, the microrobot ultimately demonstrates the ability to cross the air-liquid interface and execute directional movement in sophisticated multi-element environments and within the complex gastric wall structure, thus ensuring precise controllability. This biomimetic microrobot offers a highly valuable design concept for microrobots requiring amphibious locomotion capabilities.

