Daeyeon Lee
Papers
2
Total Citations
71
H-Index
2
About
Daeyeon Lee is pioneering the intersection of soft robotics and biomedical microengineering, with a core focus on developing adaptive microrobotic systems for challenging biological environments. His major contributions lie in creating surface topography-adaptive robotic superstructures capable of navigating and treating rugged microenvironments, such as human teeth and complex biological tissues. Lee’s work addresses the longstanding challenge of biofilm eradication and pathogen detection, introducing innovative microcapsule assemblies that exhibit adaptive mobility for targeted therapeutic delivery. His most cited paper (2022, 52 citations) demonstrates a breakthrough in biofilm removal and pathogen detection on human teeth, while his subsequent work (2025, 19 citations) advances magnetic microrobots by engineering intersubunit interactions—a fundamental hurdle in the field. By enabling collective navigation and precise, noninvasive procedures, Lee’s research holds transformative potential for biomedicine, particularly in infection treatment and targeted drug delivery. His achievements reflect a rare synthesis of materials science, robotics, and clinical application, positioning him as a rising leader in microrobotic therapeutics.
Research Focus
Key Achievements
Top Papers
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