Yonglin Wang
Papers
1
Total Citations
306
H-Index
1
About
Yonglin Wang is a leading figure in the development of advanced wearable electronics and smart textiles, with a core focus on flexible sensors and functional fiber materials. His most influential work, the 2018 paper "Highly Stretchable Core–Sheath Fibers via Wet-Spinning for Wearable Strain Sensors," has garnered over 306 citations, establishing a foundational approach for creating highly durable, stretchable, and conductive fibers. Wang’s major contribution lies in pioneering a wet-spinning method to produce core-sheath fibers that integrate carbon nanocomposites with polymer elastomers, enabling exceptional piezoresistive sensitivity for real-time motion detection. This innovation directly addresses critical challenges in health monitoring systems, human-machine interfaces, and next-generation wearable devices. His research has significantly advanced the field by demonstrating how scalable fiber fabrication can yield lightweight, robust sensors that maintain performance under extreme deformation. Wang’s work is widely recognized for bridging materials science and practical wearable technology, making him a key reference for researchers exploring stretchable electronics and smart fabrics.
Research Focus
Key Achievements
Top Papers
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