Xinming Fu
Papers
2
Total Citations
18
H-Index
2
About
Xinming Fu is pioneering the next generation of soft robotics through innovative actuator design. His research centers on developing smart, stimuli-responsive materials that can achieve controlled motion at fluid interfaces—a critical challenge for advancing soft robotics and sensor technologies. Fu’s major contributions include the creation of a dual-mode driven Marangoni actuator that combines spontaneity with precise controllability, enabling unprecedented maneuverability in soft robotic systems. His work on shape-regulated motion and energy conversion in polyelectrolyte membrane actuators has demonstrated how ethanol-containing materials can excel in complex fluid environments, overcoming long-standing limitations in actuator performance. With his most-cited papers from 2024-2025 already accumulating significant attention, Fu is establishing himself as an emerging leader in the field. His research not only advances fundamental understanding of actuator dynamics at fluid interfaces but also opens practical pathways for developing more versatile and responsive soft robots capable of operating in challenging real-world conditions.
Research Focus
Key Achievements
Top Papers
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