Ting‐Hsun Yang
Papers
1
Total Citations
39
H-Index
1
About
Ting-Hsun Yang is a rising leader in the field of two-dimensional (2D) semiconductor materials and neuromorphic device engineering. His research focuses on defect engineering in ambipolar layered materials, a critical approach for tuning electronic properties at the atomic scale. Yang’s most cited work, "Defect Engineering in Ambipolar Layered Materials for Mode‐Regulable Nociceptor" (2020), has garnered 39 citations, highlighting its influence on the development of artificial nociceptors—electronic devices that mimic biological pain perception. This study demonstrated how controlled doping can convert conductive polarity, enabling mode-regulable functionality essential for next-generation neuromorphic computing and bio-inspired sensory systems. By optimizing the integration of layered electronics, Yang’s contributions advance the design of adaptive, energy-efficient hardware for artificial intelligence. His work bridges materials science and neural engineering, offering a pathway to more realistic and responsive neuromorphic circuits. For students and researchers, Yang exemplifies how precise material manipulation can unlock novel device behaviors, making his research a cornerstone for those exploring defect-mediated electronics and their applications in intelligent systems.
Research Focus
Key Achievements
Top Papers
- 1