Papers
2
Total Citations
10
H-Index
2
About
Keonmok Kim is a researcher advancing the frontiers of micro-robotics and magnetic sensor technologies. His work centers on developing innovative solutions for precise manipulation and sensing at the microscale, with significant implications for biomedical devices and lab-on-a-chip applications. Kim’s major contributions include the design of a pressure-insensitive magnetic shear force sensor featuring a pillar structure, which enables versatile and robust sensing in challenging environments. This work, published in 2024, has already garnered 8 citations, highlighting its immediate impact. Additionally, Kim has pioneered the "Magnetic Lateral Ladder" concept, an asymmetric magnetic texture resembling a railway track that facilitates the unidirectional transport of microrobots. This breakthrough, featured as a cover article in *Small* (2024), addresses critical challenges in controlling functionalized microrobots for applications like cells-on-chip. With over 10 citations across his most-cited papers, Kim’s research is establishing foundational principles for next-generation micro-manipulation systems. His work not only demonstrates technical ingenuity but also promises practical advancements in targeted drug delivery and cellular analysis, marking him as an emerging leader in magnetic microsystems.
Research Focus
Key Achievements
Top Papers
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