Papers
3
Total Citations
40
H-Index
3
About
Mingrui Shu is at the forefront of intelligent robotics and human-machine interaction, pioneering self-powered, flexible sensing technologies that bridge the gap between machines and their environments. His research centers on triboelectric nanogenerators and tactile sensing skins, with a focus on creating robust, wearable interfaces that require no external power source. Shu’s major contributions include the development of a wearable triboelectric tactile patch for intuitive human-machine communication (12 citations), and a reconfigurable omnidirectional whisker sensor array that enables versatile, multi-axis force and motion detection for complex interaction scenarios (6 citations). His most impactful work, a comprehensive review on flexible nanogenerators for intelligent robotics (22 citations), has become a key reference in the field, outlining design principles and manufacturing strategies that drive embodied artificial intelligence. By enabling robots to perceive touch, pressure, and motion with unprecedented adaptability, Shu’s innovations are laying the groundwork for safer, more autonomous robotic systems. His achievements have been recognized for advancing self-powered sensing, positioning him as a rising leader in next-generation human-machine-environment interaction.
Research Focus
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Top Papers
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