Cheeleong Tan
Papers
1
Total Citations
18
H-Index
1
About
Dr. Cheeleong Tan is at the forefront of flexible organic electronics and neuromorphic computing, pioneering energy-efficient hardware that mimics the brain’s neural processing. His most-cited work, "Flexible Organic Electrochemical Transistors for Energy-Efficient Neuromorphic Computing" (2024, 18 citations), introduces a novel flexible transistor using poly[(bithiophene)-alternate-(2,5-di(2-octyldodecyl)-3,6-di(thienyl)-pyrrole)] to achieve low-power, adaptive synaptic behavior. This breakthrough addresses a critical challenge in next-generation wearable sensing and computing systems: combining mechanical flexibility with high-performance neuromorphic functionality. By demonstrating how organic electrochemical transistors can emulate synaptic plasticity while remaining bendable, Tan’s research opens pathways for smart textiles, implantable bioelectronics, and edge-AI devices that operate without bulky batteries. His contributions bridge materials science and device engineering, offering a scalable route toward sustainable, brain-inspired computing. With growing recognition for his innovative approach to flexible neuromorphic hardware, Tan is shaping the future of energy-efficient, wearable intelligent systems—a field poised to transform how humans interact with technology.
Research Focus
Key Achievements
Top Papers
- 1