Papers
4
Total Citations
1,077
H-Index
4
About
Xiang Chu is a leading researcher in flexible electronics and wearable sensing technologies, with a focus on developing advanced materials for self-powered and highly sensitive mechanical sensors. His major contributions lie in the design of bioinspired, nanostructured devices that bridge the gap between human motion and electronic interfaces. Chu’s most influential work includes the creation of a cowpea-structured PVDF/ZnO nanofiber-based piezoelectric sensor (479 citations), which enables remote gesture control through bending motion, and a microchannel-confined MXene-based piezoresistive micro-force sensor (387 citations) for multifunctional, high-integration wearable health monitoring. He also pioneered an epidermis-inspired ultrathin 3D cellular sensor array (153 citations) for self-powered biomedical monitoring, and more recently, a mass-produced skin-inspired piezoresistive sensing array with an interlocking interface (58 citations) for object recognition in robotic haptics. These innovations have significantly advanced the fields of soft robotics, human-machine interfaces, and healthcare monitoring, demonstrating exceptional sensitivity and mechanical stability. Chu’s work has garnered over 1,000 citations, underscoring his impact on next-generation flexible electronics and intelligent sensing systems.
Research Focus
Key Achievements
Top Papers
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