Guoqiang Zheng
Papers
9
Total Citations
752
H-Index
8
About
Guoqiang Zheng is a pioneering researcher at the forefront of flexible electronics, wearable sensing technologies, and soft actuators. His work has fundamentally advanced the development of electronic skins, stretchable strain sensors, and self-powered sensing systems, earning him over 750 citations across his most influential publications. Zheng's most celebrated contribution — an ultra-stretchable triboelectric nanogenerator functioning as a self-powered electronic skin — garnered 256 citations and demonstrated how mechanical energy harvesting and tactile sensing could be seamlessly integrated into a single platform. Building on this foundation, his research into multilayered fiber-based strain sensors, carbon dot-reinforced hydrogels, and nacre-mimetic multifunctional electronic skins has consistently pushed the boundaries of sensitivity, stretchability, and multifunctionality in wearable devices. Beyond sensing, Zheng has made meaningful contributions to biomimetic soft actuators, exploring programmable micropatterned surfaces and bilayer thermoplastic films capable of responding to multiple stimuli — work that opens exciting avenues in soft robotics and biomedical engineering. His recent application of machine learning to gesture recognition through bionic strain sensors reflects a sophisticated cross-disciplinary vision. Zheng's body of work positions him as an essential voice in the rapidly evolving landscape of human-machine interaction and intelligent wearable systems.
Research Focus
Key Achievements
Top Papers
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- 8Multi-stimuli-responsive actuator based on bilayered thermoplastic film19 citations · 2022
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