Shayan Seyedin
Papers
3
Total Citations
227
H-Index
3
About
Shayan Seyedin is a leading researcher in the field of advanced fibrous materials and wearable electronics, with a focus on developing scalable, high-performance electronic textiles. His work centers on the synthesis and application of conductive nanoyarns and microstructures for sensing, energy storage, and soft robotics. Seyedin’s most impactful contribution is the development of a “bath electrospinning” technique for continuous production of MXene-infiltrated nanoyarns, a breakthrough that enables scalable fabrication of stretchable, electroactive yarns for multifunctional e-textiles. This work has garnered 142 citations, reflecting its significance in the field. He also pioneered a method for the continuous production of stretchable conductive multifilaments in kilometer-scale lengths, allowing for the knitting of wearable strain-sensing textiles (82 citations). Additionally, Seyedin has explored three-dimensional printing of conductive composite structures using nanogrooved carbon microtubes. His achievements include advancing the manufacturability of smart textiles, bridging the gap between laboratory innovation and practical, large-scale applications. Seyedin’s research is highly influential for students and researchers interested in the intersection of materials science, nanotechnology, and wearable technology.
Research Focus
Key Achievements
Top Papers
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