Papers
4
Total Citations
78
H-Index
4
About
Yuting Wang’s research sits at the dynamic intersection of flexible electronics, biohybrid nanomedicine, and advanced functional materials for environmental remediation. Her most impactful work includes the development of highly stretchable, healable, and ultra-durable polyvinyl alcohol-based ionic conductors (53 citations), which offer a safe, disposable alternative for next-generation wearable electronics. In the biomedical realm, Wang pioneered a self-mineralized biohybrid system (SO@FeS) that triggers apoptosis–ferroptosis synergistic tumor therapy, visualized directly by cryo-soft X-ray tomography—a breakthrough that marries living organisms with nanoparticles for targeted cancer treatment. She also engineered a washable, permeable, and ultrasensitive Sn-based textile pressure sensor for continuous health monitoring, and created a magnetic hyperporous elastic material with exceptional fatigue resistance and oil retention for efficient oil–water separation. With her work spanning from stretchable conductors to biohybrid cancer therapy, Wang demonstrates a remarkable ability to translate fundamental materials science into practical, high-impact solutions. Her growing citation record and diverse portfolio mark her as an emerging leader in sustainable and biomedical materials innovation.
Research Focus
Key Achievements
Top Papers
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