Wen Siang Lew
Papers
2
Total Citations
16
H-Index
2
About
Wen Siang Lew is a leading figure in the development of next-generation flexible spintronics and neuromorphic sensory systems. His research focuses on bridging the gap between advanced magnetic materials and bio-inspired electronics, with a particular emphasis on scalable fabrication and intelligent signal processing. Lew’s pioneering work on polydopamine-assisted electroless deposition introduced a cost-effective, highly scalable technique for coating durable NiFe magnetic thin films onto flexible substrates, a critical enabler for wearable spintronics and soft robotics. This work has garnered significant attention, with his most-cited paper accumulating 10 citations since 2025. In parallel, Lew is advancing the field of neuromorphic computing by exploiting spatial ionic dynamics in solid-state organic electrochemical transistors. His 2024 study on multi-tactile sensing and processing, which mimics the human nervous system, has already earned 6 citations and demonstrates a novel approach to integrating sensing and computation for human-machine interfaces and biomedical applications. By merging materials innovation with device architecture, Lew is shaping a future where flexible, intelligent electronics can perceive and process information in ways previously confined to biology.
Research Focus
Key Achievements
Top Papers
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