Min-Sheng Suen
Papers
3
Total Citations
108
H-Index
3
About
Min-Sheng Suen is a researcher specializing in flexible electronics, tactile sensing, and artificial electronic skin technologies. His work sits at the intersection of materials science and sensor engineering, with a particular focus on developing next-generation sensing devices that replicate the sophisticated capabilities of human skin. Suen's most celebrated contribution is his development of flexible multifunctional tactile sensors utilizing interlocked zinc oxide (ZnO) nanorod arrays, a landmark study that has accumulated 85 citations and established him as a key voice in the electronic skin community. This work demonstrated how polydimethylsiloxane (PDMS) substrates combined with ZnO nanostructures can yield highly sensitive, flexible sensors capable of simultaneously measuring pressure and temperature — properties essential for lifelike prosthetics and robotic interfaces. Building on this foundation, Suen advanced the field further with his 2018 capacitive tactile sensor featuring concentric-shape electrodes, capable of decoupling normal and shear forces while introducing torsion measurement — a significant engineering challenge that had long limited multi-axial force sensing. Together, his publications reflect a coherent and impactful research trajectory, collectively contributing to the design principles that guide modern wearable and robotic sensing systems.
Research Focus
Key Achievements
Top Papers
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