Papers
7
Total Citations
85
H-Index
6
About
Kaihuai Yang is a leading researcher in the field of smart materials and soft robotics, specializing in the design of multi-responsive actuators and flexible sensors. Their work focuses on developing bio-inspired, dual-responsive actuators using advanced composites such as graphene oxide, MXene (Ti₃C₂Tₓ), and bacterial cellulose, enabling programmable and bidirectional bending for bionic applications. Yang’s most-cited paper (21 citations) introduces a dual-responsive graphene oxide composite actuator for soft robotics, while subsequent studies (19 and 14 citations) advance nacre-inspired films and MXene/polymer bilayers for enhanced mechanical strength and multi-stimuli responsiveness. Their impact extends to electromagnetic interference shielding and solvent-driven actuators with multistable shape morphing (9 citations each). Notably, Yang’s recent work integrates neural networks with carbon nanotube and MXene-based dual-modal sensors (8 and 5 citations), enabling material perception and pronunciation recognition—a breakthrough for intelligent soft robotics. With over 85 total citations across key publications, Yang’s contributions are driving innovation in untethered, programmable actuators and smart sensing systems, positioning them as a rising figure in the intersection of materials science and bionic engineering.
Research Focus
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Top Papers
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