L. James Lee
Papers
1
Total Citations
20
H-Index
1
About
L. James Lee is a pioneering researcher at the forefront of energy harvesting and self-powered systems, with a primary focus on triboelectric and electromagnetic nanogenerators. His most-cited work, "Synergistically designed carbon-based hybrid non-contact triboelectric-and-electromagnetic nanogenerator with ultralong charge retention for wearable and ambient electromagnetic-waste energy harvesting and self-powered sensing" (2025, 20 citations), exemplifies his innovative approach to addressing critical challenges in sustainable energy. Lee’s major contribution lies in the synergistic design of hybrid nanogenerators that integrate carbon-based materials to achieve ultralong charge retention, enabling efficient harvesting of both mechanical and ambient electromagnetic waste energy. This breakthrough has significant implications for wearable technology, allowing for continuous, maintenance-free power generation and self-powered sensing without physical contact. His work not only advances the fundamental understanding of energy conversion mechanisms but also offers practical solutions for powering next-generation portable electronics and IoT devices. Lee’s research is characterized by its interdisciplinary nature, combining materials science, nanotechnology, and electrical engineering to create high-performance, durable energy systems. With his impactful contributions, Lee is shaping the future of autonomous, sustainable energy solutions for a connected world.
Research Focus
Key Achievements
Top Papers
- 1