Yaoye Hong
Papers
14
Total Citations
1,604
H-Index
12
About
Yaoye Hong is an emerging force in soft robotics and smart materials, whose research bridges fundamental mechanics with cutting-edge autonomous systems. Working at the intersection of soft robotics, programmable materials, and bioinspired design, Hong has rapidly built a portfolio of high-impact contributions that are reshaping how researchers think about intelligent machines. His most celebrated work, a 2022 review on bistable and multistable actuators (524 citations), established a comprehensive framework for harnessing snap-through instabilities—phenomena borrowed from Venus flytraps and everyday objects—to drive next-generation soft robots. Complementing this, his kirigami metasheet research unlocks elegant 2D-to-3D shape-morphing strategies, offering powerful tools for inverse design of complex geometries. Hong's bioinspired systems are particularly striking: caterpillar-inspired crawling robots, twisting autonomous navigators, and maze-escaping machines that exploit physical intelligence rather than computational brains demonstrate his vision for robots that think through their bodies. His tendril-inspired gripper further showcases versatility, achieving simultaneous delicacy, strength, and precision in a single device. With over 1,500 citations across a concentrated body of recent work, Hong has swiftly positioned himself as a leading voice in miniature soft robotics, autonomous locomotion, and morphable structures—making his research essential reading for anyone entering these rapidly evolving fields.
Research Focus
Key Achievements
Top Papers
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- 3Twisting for soft intelligent autonomous robot in unstructured environments214 citations · 2022
- 4Programmable active kirigami metasheets with more freedom of actuation146 citations · 2019
- 5Boundary curvature guided programmable shape-morphing kirigami sheets122 citations · 2022
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- 9Physically intelligent autonomous soft robotic maze escaper53 citations · 2023
- 10