Xinru Yang
Papers
1
Total Citations
54
H-Index
1
About
Xinru Yang is a pioneering researcher at the forefront of flexible electronics and self-powered wearable sensors. Her primary research areas encompass thermogalvanic energy harvesting, hydrogel-based electronic skin (e-skin), and multi-modal sensing technologies. Yang’s most notable contribution is the development of a novel thermogalvanic hydrogel-based e-skin capable of simultaneously sensing temperature and strain without an external power source. This breakthrough, published in 2024 and already garnering 54 citations, addresses a critical need in healthcare diagnostics by enabling self-powered, on-body monitoring. By ingeniously integrating iodine/triiodide thermocouple ions into a flexible hydrogel matrix, she created a device that converts body heat into electrical signals while detecting mechanical deformations. This dual-modal capability represents a significant advancement over conventional single-function sensors. Yang’s work has immediate implications for prosthetics, athletic performance monitoring, and chronic disease management. Her achievement in achieving self-powered operation eliminates the need for bulky batteries, marking a key step toward truly autonomous wearable health systems. As an emerging leader in the field, Yang continues to push the boundaries of smart materials and energy-autonomous sensing platforms.
Research Focus
Key Achievements
Top Papers
- 1