Papers
2
Total Citations
24
H-Index
2
About
Rongqing Xu is a pioneering researcher in flexible electronics and tactile sensing, whose work bridges advanced nanomaterials with practical robotic applications. His most impactful contribution is the development of a highly responsive asymmetric pressure sensor using MXene/reduced graphene oxide nanocomposite, fabricated through an innovative laser scribing technique. This sensor, cited 21 times, addresses critical challenges in wearable technology by achieving exceptional sensitivity without compromising the simplicity of fabrication—a breakthrough for human physiological monitoring and smart robotics. Xu’s research excels in transforming complex material science into scalable, high-performance devices. In his recent work, Xu has advanced robotic tactile intelligence by developing data-driven models for slip detection, including directional slip identification. His 2024 study, with 3 citations, moves beyond traditional slip-occurrence detection to provide richer sensory feedback, enabling robots to achieve more stable grasps through real-time adjustments. This dual focus on material innovation and machine learning positions Xu at the forefront of next-generation haptic systems. His contributions are shaping the future of human-machine interaction, from prosthetics to industrial automation, demonstrating a rare ability to integrate fundamental materials research with applied robotics.
Research Focus
Key Achievements
Top Papers
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