Papers
2
Total Citations
42
H-Index
2
About
Xiaoyan Zhou is a leading researcher at the forefront of flexible and wearable electronics, with a core focus on developing advanced materials for energy harvesting and sensing. Her work primarily bridges organic thermoelectric materials and innovative hydrogel-based sensors, addressing critical challenges in device flexibility, durability, and low-temperature performance. Zhou’s major contributions include pioneering the application of organic thermoelectric materials for wearable devices, a field she advanced in her highly cited 2024 paper (26 citations), which highlights the potential of these materials in healthcare and AI robotics. She also developed a groundbreaking low-temperature strain sensor using cellulose-based ionic conductive hydrogels (2023, 16 citations), notable for its moldable and self-healing properties—a significant step toward sustainable, biocompatible electronics. With a growing citation impact, Zhou’s research is shaping the next generation of smart wearables, offering practical solutions for real-world applications. Her work stands out for its integration of eco-friendly materials and multifunctionality, marking her as an emerging innovator in materials science.
Research Focus
Key Achievements
Top Papers
- 1Organic Thermoelectric Materials for Wearable Electronic Devices26 citations · 2024
- 2