Papers
7
Total Citations
598
H-Index
7
About
Guozhong Xing is a leading researcher in flexible electronics and wearable sensing technologies, with particular expertise in tactile sensors, electronic skin (e-skin), and advanced nanocomposite materials. His work sits at the intersection of materials science, robotics, and human-computer interaction, focusing on developing next-generation sensing devices that mimic biological skin capabilities. Xing's most influential contribution — a capacitive flexible tactile sensor featuring a three-dimensional porous dielectric layer — has amassed over 250 citations since 2019, establishing foundational principles for high-sensitivity, rapid-response wearable sensors. Building on this, he pioneered bioinspired designs, including an octopus-sucker-inspired tactile sensor achieving wide-range linear sensing, and capacitive 3D-force sensors enabling nuanced robotic grasping with simultaneous normal and tangential force perception. His innovations extend into strain sensing, developing sheath-core fiber and dual-mode magnetic strain sensors using graphite nanoplatelet composites and stretchable materials. More recently, Xing has tackled multifunctionality, engineering sensors that simultaneously decode temperature and pressure, and bioinspired piezoresistive devices utilizing carbon nanotubes and nanofibers for human-computer interaction. With a cumulative citation count exceeding 600 across his key works, Xing's research is shaping the future of intelligent robotics, healthcare monitoring, and wearable electronics.
Research Focus
Key Achievements
Top Papers
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- 5Highly Stretchable, Responsive Flexible Dual‐Mode Magnetic Strain Sensor50 citations · 2022
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