Papers
7
Total Citations
109
H-Index
5
About
Baisong Pan is at the forefront of soft robotics and smart materials, pioneering bio-inspired systems that bridge the gap between flexibility and load-bearing capacity. His research centers on developing high-performance soft actuators and sensors, with major contributions in bistable structures for inchworm-like crawling robots and multifunctional piezoresistive sensors. Notably, his work on a laser-assisted thermoplastic composite robot for bonding GF/PP composites (2024, 45 citations) demonstrates innovation in automated fiber placement, while his inchworm-like crawling robot with bistable structures and pneumatic networks (2023, 17 citations) addresses the critical challenge of insufficient stiffness in soft robots, enabling high load capacity and efficient transport. Pan also developed a multifunctional MXene/CNC/WPU aerogel-based sensor (2024, 14 citations) for motion detection and thermal insulation, and explored morphing characteristics of bistable laminates with 3D-printed shape memory polymers (2024, 13 citations). His electrothermal actuation robot (2024, 13 citations) further advances load-carrying capabilities. With recent works on octopus-inspired grippers and umbrella-rib-like soft grippers, Pan continues to push boundaries in soft robotics, making his research highly cited and impactful for students and researchers in biomimetics and smart materials.
Research Focus
Key Achievements
Top Papers
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