Papers
5
Total Citations
406
H-Index
5
About
Han Ouyang is an accomplished researcher specializing in flexible and stretchable energy harvesting, wearable electronics, and human-machine interaction systems. His work centers on triboelectric nanogenerators (TENGs) — devices that convert mechanical motion into electricity — with a particular focus on making these systems practical for real-world wearable and robotic applications. Ouyang's most influential contribution, cited 233 times, introduced a stretchable TENG incorporating MXene liquid electrodes, leveraging the material's exceptional electronegativity to dramatically boost electrical output while maintaining mechanical deformability. This breakthrough addressed a critical challenge in powering intelligent wearable devices. He further advanced the field by developing ultrathin stretchable TENGs enhanced through postcharging electrode materials (76 citations) and dual-mode nanogenerators capable of simultaneously supporting rehabilitation monitoring and information interaction (58 citations). More recently, Ouyang has pushed toward intelligent systems integration, combining deep learning with triboelectric acoustic sensors to enable robust voice-based human-machine collaboration in noisy environments, and pioneering bioinspired ionic skin capable of supporting dexterous robotic manipulation. Together, his portfolio demonstrates a clear trajectory from fundamental energy harvesting toward sophisticated, AI-enhanced soft robotics and healthcare applications, establishing him as an innovative force at the intersection of materials science, electronics, and intelligent systems.
Research Focus
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