Papers

3

Total Citations

51

H-Index

2

About

Kyusang Lee is a multidisciplinary researcher whose work spans neuromorphic electronics, flexible photovoltaics, and bio-inspired robotics — fields united by a drive to merge advanced materials with functional, real-world systems. His most notable recent contribution involves the development of an artificial neuromuscular junction using ferroelectric CuInP₂S₆ integrated with GaN high-electron-mobility transistors, a landmark achievement that emulates the biological interface between neurons and muscle fibers. This device addresses one of neuromorphic engineering's most demanding challenges: combining synaptic plasticity with the high driving power needed to trigger physical motion, enabling enhanced reflexes and oculomotor dynamics (32 citations). Earlier in his career, Lee demonstrated remarkable ingenuity in miniaturized robotics, pioneering conformal, structurally integrated antennas with epitaxial lift-off thin-film III-V solar cell arrays for flapping-wing robotic platforms — elegantly repurposing photovoltaic components as radiating antenna elements to reduce mass and complexity (17 citations). Taken together, Lee's research reflects a consistent commitment to hardware innovation at the intersection of energy, communication, and biologically inspired computing, making him a distinctive voice in next-generation intelligent systems design.

Research Focus

Key Achievements

2
H-Index
3
Papers
51
Total Citations
17
Avg Citations/Paper
🏆 Most Cited Paper
An artificial neuromuscular junction for enhanced reflexes and oculomotor dynamics based on a ferroelectric CuInP <sub>2</sub> S <sub>6</sub> /GaN HEMT
32 citations · 2023
📈 Most Prolific Year: 2023 (1 Papers)
🤝 Key Collaborators: 10
🏛 Institutions: University of Virginia, University of Michigan–Ann Arbor

Top Papers

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Key Collaborators

Contact & Links

Available for collaboration
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