Papers
10
Total Citations
268
H-Index
8
About
Liangsong Huang is a prominent researcher specializing in flexible sensing technologies, wearable electronics, and intelligent robotic systems. His work has significantly advanced the development of high-performance flexible pressure sensors, with a particular focus on leveraging multi-walled carbon nanotubes (MWCNTs) and biomimetic microstructures to achieve exceptional sensitivity, broad sensing ranges, and robust stability. His 2019 study on piezoresistive sensors with MWCNT-based microarray structures (44 citations) and his subsequent work on capacitive pressure sensors (41 citations) established him as a leading voice in the field, demonstrating innovative fabrication strategies inspired by natural structures such as ginkgo leaves and hosta leaves. Huang has also pioneered multifunctional sensing approaches, including dual-mode sensors combining triboelectric and piezoresistive mechanisms to address diverse application scenarios. His research finds direct application in robotic skin, intelligent prosthetics, human-computer interaction, and healthcare monitoring. Beyond flexible electronics, his earlier contributions to industrial robotics — including inverse kinematics solutions for 7DOF robots and vibration suppression in direct drive systems — reveal a multidisciplinary foundation. With over 260 cumulative citations, Huang's body of work reflects sustained innovation at the intersection of materials science, biomimicry, and intelligent sensing.
Research Focus
Key Achievements
Top Papers
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- 3Research progress of multifunctional flexible proximity sensors40 citations · 2023
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- 8A new method of inverse kinematics solution for industrial 7DOF robot10 citations · 2013
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