Hanwen Yuan
Papers
4
Total Citations
16
H-Index
3
About
Hanwen Yuan is a researcher specializing in advanced microfabrication, micro/nanofluidics, and precision robotic dispensing systems. His work centers on developing innovative techniques for creating suspended micron and sub-micron scale fiber structures with exceptional spatial control, pushing the boundaries of what is achievable in small-scale manufacturing. Yuan's most notable contributions involve the development of a 3-axis robotic dispensing system capable of precisely writing suspended polymer fiber structures in three dimensions. By controlling fiber length, orientation, and diameter through careful manipulation of dispensing parameters and spatial positioning, his 2015 work introduced a reproducible and programmable approach to fiber fabrication that garnered up to 6 citations. Building on this foundation, Yuan extended his methodology in 2016 to engineer micro/nanofluidic platforms featuring embedded micro and nanoscale channels — a significant advancement for lab-on-chip and biomedical device applications, each iteration earning recognition within the fabrication research community. With a cumulative citation count across his key publications, Yuan's research demonstrates meaningful early-stage impact in the specialized field of robotic-assisted nanofabrication. His work is particularly valuable to students and researchers exploring scalable, cost-effective alternatives to conventional lithography-based fabrication methods for fluidic and fiber-based microsystems.
Research Focus
Key Achievements
Top Papers
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