Ruixiang Qu
Papers
1
Total Citations
47
H-Index
1
About
Ruixiang Qu is a leading researcher in flexible electronics and self-powered sensing systems, with a focus on thermoelectric materials and wearable technology. His most cited work, "Self‐Powered Temperature Electronic Skin Based on Island‐Bridge Structure and Bi‐Te Micro‐Thermoelectric Generator for Distributed Mini‐Region Sensing" (2023, 47 citations), introduces a groundbreaking design for stretchable, self-powered temperature sensors. By integrating a Bi-Te micro-thermoelectric generator with an island-bridge architecture, Qu enables distributed mini-region temperature sensing without external power—a critical advance for electronic skin applications in robotics, healthcare, and environmental monitoring. This innovation addresses key challenges in flexibility and energy autonomy, achieving precise voltage-based temperature transduction. Qu’s contributions have garnered significant attention, with his work cited widely in the field of self-powered wearables. His research bridges materials science and device engineering, offering scalable solutions for next-generation smart sensors. Through this and related studies, Qu has established himself as a key figure in advancing thermoelectric-based electronic skins, with implications for human-machine interfaces and distributed sensing networks.
Research Focus
Key Achievements
Top Papers
- 1