Papers
19
Total Citations
491
H-Index
10
About
Zhixing Ge is a pioneering researcher at the forefront of soft robotics, biomimetic systems, and smart materials, whose work bridges cutting-edge fabrication techniques with real-world biomedical and engineering applications. Ge's research focuses on developing stimuli-responsive soft robots actuated by light, magnetic fields, and thermal energy, drawing inspiration from nature to engineer miniature devices capable of complex locomotion and functional tasks. Among Ge's most celebrated contributions is the development of multifunctional hybrid soft millirobots using 4D printing and thermo-magnetic actuation (106 citations), alongside a visible light-driven jellyfish-inspired swimming robot utilizing reversible photo-responsive hydrogels (105 citations). These works have established Ge as a leading voice in soft actuator design for biomimetic applications. Notably, Ge has also advanced targeted drug delivery through a magnetically controlled millipede-inspired soft robot capable of navigating the stomach environment (57 citations), and pioneered 3D microstructure manipulation using optothermally generated bubble microrobots (55 citations). With a growing body of work exceeding 400 cumulative citations and spanning underwater bionic robots, bubble-based microrobots, and photo-responsive composite materials, Ge's research offers transformative insights for students and researchers working at the intersection of soft robotics, materials science, and minimally invasive medicine.
Research Focus
Key Achievements
Top Papers
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- 2Visible Light-Driven Jellyfish-like Miniature Swimming Soft Robot105 citations · 2021
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- 8Bubble-based microrobot: Recent progress and future perspective19 citations · 2023
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