Papers
1
Total Citations
65
H-Index
1
About
Yu Wan is a leading researcher in advanced flexible electronics and smart materials, with a focus on developing high-performance sensors for wearable technology. Their most-cited work, a 2024 paper on "High-performance and frost-resistance MXene co-ionic liquid conductive hydrogel printed by electrohydrodynamic for flexible strain sensor" (65 citations), introduces a groundbreaking approach to creating conductive hydrogels that remain functional in extreme cold. By integrating MXene nanosheets with ionic liquids, Wan achieved a material that combines exceptional electrical conductivity, mechanical flexibility, and frost resistance—critical for real-world applications in arctic or high-altitude environments. This innovation addresses a key limitation of conventional hydrogels, which often fail under freezing conditions. Wan’s use of electrohydrodynamic printing further enables precise, scalable fabrication of strain sensors with high sensitivity and durability. Their work bridges materials science and manufacturing, offering a pathway to next-generation wearable devices for health monitoring, human-machine interfaces, and soft robotics. With growing recognition, Wan’s research continues to influence the development of robust, multifunctional electronic skins and smart textiles.
Research Focus
Key Achievements
Top Papers
- 1