Papers
5
Total Citations
71
H-Index
4
About
Min Gong’s research sits at the dynamic intersection of flexible electronics, soft robotics, and bioinspired materials. Her work tackles the fundamental challenge of creating high-performance, multifunctional materials that can be seamlessly integrated into wearable and robotic systems. A standout contribution is her development of a direct-writing technique for silver nanowires, achieving patterns with line widths down to 50 μm and ultrahigh conductivity—a breakthrough for high-resolution, flexible circuits. She has also pioneered a jellyfish-inspired ionic skin, a supramolecular zwitterionic hydrogel that is ultrastretchable, adhesive, self-healing, and even photoswitchable fluorescent, opening new avenues for smart, interactive interfaces. Her comprehensive review on flexible tactile sensing systems, with 21 citations, critically bridges the gap between theoretical research and practical applications, charting the field’s evolution from industrial sensors to intelligent systems. With over 70 citations across her most-cited works, Gong is recognized for advancing fully 3D-printed dielectric elastomer actuators and bioinspired toughening strategies for soft elastomers. Her work is not only technically rigorous but also deeply creative, drawing inspiration from nature to solve pressing engineering challenges in soft matter.
Research Focus
Key Achievements
Top Papers
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