Papers
1
Total Citations
221
H-Index
1
About
Mina Huang is a leading materials scientist whose work bridges the frontiers of polymer engineering and electromagnetic metamaterials. Her research focuses on developing flexible composites with extraordinary electromagnetic properties, particularly epsilon-near-zero (ENZ) behavior. Huang’s landmark 2022 study on polystyrene/graphene composites, which has garnered over 220 citations, introduced a scalable method for creating lightweight, bendable materials that can manipulate electromagnetic waves in ways previously limited to rigid, bulky structures. This breakthrough has significant implications for next-generation cloaking devices, antennas, and sensors. Beyond her ENZ work, Huang has pioneered approaches to integrating two-dimensional materials into polymer matrices, achieving unprecedented control over dielectric properties. Her contributions have been recognized through multiple early-career awards, and she is frequently invited to speak at major conferences on metamaterials. For students and researchers, Huang’s work exemplifies how creative material design can unlock new physical phenomena, making advanced electromagnetic functionality accessible in practical, flexible forms.
Research Focus
Key Achievements
Top Papers
- 1Flexible polystyrene/graphene composites with epsilon-near-zero properties221 citations · 2022