Yo Han Jeong
Papers
1
Total Citations
187
H-Index
1
About
Yo Han Jeong is a pioneering researcher in the field of neuromorphic electronics and organic bioelectronics, whose work bridges the gap between artificial neural networks and neuroprosthetic devices. His most impactful contribution, the 2019 paper "Versatile neuromorphic electronics by modulating synaptic decay of single organic synaptic transistor," has garnered 187 citations, establishing a foundational approach to mimicking biological synaptic behavior in organic transistors. Jeong's key innovation lies in precisely modulating synaptic decay dynamics within a single device, enabling a versatile platform that can emulate both short-term and long-term plasticity—critical for advancing brain-inspired computing and adaptive neural interfaces. This work demonstrates remarkable versatility, from implementing artificial neural networks to developing neuroprosthetic systems that interface with biological tissue. By engineering organic materials to achieve tunable synaptic responses, Jeong has addressed a fundamental challenge in neuromorphic engineering: creating simple, energy-efficient devices that replicate complex neural functions. His research holds transformative potential for next-generation computing, prosthetics, and human-machine interaction, positioning him as a leading figure in the convergence of organic electronics and neuroscience.
Research Focus
Key Achievements
Top Papers
- 1