Xinyi Hu
Papers
1
Total Citations
16
H-Index
1
About
Xinyi Hu is a rising innovator in the field of flexible electronics and tactile sensing, with a primary focus on stretchable triboelectric sensors. Her most-cited work, "Stretchable triboelectric sensor array for real-time tactile sensing based on coaxial printing" (2023), has garnered 16 citations, establishing her as a promising voice in advanced materials and wearable technology. Hu’s major contribution lies in pioneering coaxial printing techniques to fabricate highly stretchable, self-powered sensor arrays that enable real-time, high-resolution tactile feedback—a critical advancement for applications in soft robotics, human-machine interfaces, and electronic skin. By integrating triboelectric nanogenerators with scalable manufacturing, her research addresses the long-standing challenge of balancing mechanical flexibility with sensing accuracy. This work not only demonstrates a novel approach to multi-axial sensing but also opens pathways for low-cost, customizable wearable devices. Hu’s achievements reflect a deep commitment to bridging materials science and practical engineering, making her a researcher to watch in the rapidly evolving landscape of intelligent, deformable sensors.
Research Focus
Key Achievements
Top Papers
- 1