Papers
2
Total Citations
40
H-Index
2
About
Fayu Wan is a leading researcher at the intersection of advanced materials and biomedical engineering, with key contributions in stretchable electronics, electromagnetic composites, and bioprinting for therapeutic applications. Their most cited work, "A General Approach for Buckled Bulk Composites by Combined Biaxial Stretch and Layer‐by‐Layer Deposition and Their Electrical and Electromagnetic Applications" (2019, 38 citations), introduces a novel fabrication method for high-performance stretchable conductors. By combining biaxial stretch with layer-by-layer deposition, Wan created buckled bulk composites that maintain stable electrical conductance under large deformations—a critical breakthrough for wearable electronics and soft robotics. This work addresses a fundamental challenge in the field: achieving bulk conductivity while preserving stretchability. More recently, Wan has expanded into bioprinting for therapeutics (2023), exploring 3D-printed constructs for drug delivery and tissue regeneration. Their research demonstrates a rare ability to bridge materials science with practical biomedical needs, offering scalable solutions for next-generation flexible devices. With a growing citation footprint, Wan’s work is shaping the future of deformable electronics and biofabrication, making them a notable figure in both materials engineering and therapeutic innovation.
Research Focus
Key Achievements
Top Papers
- 1
- 2Bioprinting for Therapeutics2 citations · 2023