Ko‐Chun Lee
Papers
1
Total Citations
39
H-Index
1
About
Ko-Chun Lee is a leading researcher in the field of two-dimensional (2D) semiconductor materials, with a focused expertise in defect engineering and ambipolar layered systems. His work is central to advancing the development of atomically thick materials for next-generation electronic and neuromorphic devices. Lee’s major contribution lies in demonstrating how doping-induced conversion of conductive polarity can be strategically employed to regulate material properties and functions. This approach is exemplified in his highly cited 2020 paper, "Defect Engineering in Ambipolar Layered Materials for Mode‐Regulable Nociceptor," which has garnered 39 citations and showcases a novel method for creating mode-regulable artificial nociceptors—key components for bio-inspired computing. By optimizing the integration of layered electronics, Lee’s research bridges fundamental materials science with practical device applications, offering a pathway toward more efficient, adaptive, and intelligent electronic systems. His work is particularly impactful for students and researchers exploring the intersection of 2D materials, defect engineering, and neuromorphic engineering.
Research Focus
Key Achievements
Top Papers
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