Tae‐Woo Lee
Papers
7
Total Citations
1,656
H-Index
7
About
Tae-Woo Lee is a pioneering researcher at the forefront of neuromorphic electronics, bioinspired computing, and organic optoelectronics. His work centers on developing flexible and stretchable electronic systems that emulate the architecture and plasticity of the human nervous system, with transformative implications for soft robotics, neuroprosthetics, and next-generation wearable technologies. Lee's most influential contributions include the development of organic synaptic transistors capable of mimicking biological neural behaviors and the landmark demonstration of a stretchable optoelectronic sensorimotor synapse — a device that integrates artificial sensory and motor functions into a single system, garnering over 500 citations. His comprehensive reviews on organic synapses and flexible neuromorphic electronics have collectively attracted more than 850 citations, establishing him as a definitive voice in the field. His research into neuromorphic skin and artificial nerve systems further bridges the gap between biological and electronic intelligence. Beyond neuromorphics, Lee has made notable contributions to metal-halide perovskite light-emitting diodes, a field that has seen dramatic efficiency gains exceeding 30% external quantum efficiency. With thousands of citations across his portfolio, Lee's interdisciplinary vision continues to shape the future of bioelectronics and brain-inspired computing.
Research Focus
Key Achievements
Top Papers
- 1
- 2Stretchable organic optoelectronic sensorimotor synapse516 citations · 2018
- 3
- 4
- 5Organic Artificial Nerves: Neuromorphic Robotics and Bioelectronics52 citations · 2025
- 6Neuromorphic Skin Based on Emerging Artificial Synapses37 citations · 2022
- 7