Taeghwan Hyeon

Seoul National University, Institute for Basic Science

Papers

4

Total Citations

1,377

H-Index

4

About

Taeghwan Hyeon is a pioneering figure in wearable electronics and nanomaterials, renowned for his transformative contributions to stretchable sensors and human–machine interfaces. His research focuses on developing advanced materials—including graphene heterostructures, colloidal quantum dots, and porous pressure-sensitive rubbers—to create high-performance, transparent, and stretchable devices. Among his most impactful works is the development of a reverse-micelle-induced porous pressure-sensitive rubber (627 citations), which dramatically enhances piezosensitivity for wearable human–machine interfaces. He also introduced transparent and stretchable interactive human–machine interfaces based on patterned graphene heterostructures (578 citations), enabling low-power, highly transparent control systems for personal mobile electronics and the Internet of Things. Additionally, his fully stretchable optoelectronic sensors using colloidal quantum dots (158 citations) have advanced photoplethysmographic signal sensing for biomedical applications. With over 1,300 citations across these key papers alone, Hyeon’s innovations are driving the next generation of flexible, wearable technology—bridging materials science, electronics, and biomedicine to create intuitive, skin-integrated devices that redefine how humans interact with machines.

Research Focus

Key Achievements

4
H-Index
4
Papers
1,377
Total Citations
344
Avg Citations/Paper
🏆 Most Cited Paper
Reverse‐Micelle‐Induced Porous Pressure‐Sensitive Rubber for Wearable Human–Machine Interfaces
627 citations · 2014
📈 Most Prolific Year: 2014 (2 Papers)
🤝 Key Collaborators: 24
🏛 Institutions: Seoul National University, Institute for Basic Science

Top Papers

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Key Collaborators

Contact & Links

Available for collaboration
Content generated · 13 days ago