Papers
4
Total Citations
138
H-Index
3
About
Shaoshuai He is an emerging researcher at the forefront of flexible electronics, wearable sensing technologies, and advanced functional materials. His work centers on designing next-generation hydrogel-based sensors and tactile perception systems that bridge the gap between materials science and intelligent robotics. He made a notable early impact with his 2021 study on MXene nanocomposite hydrogels engineered for non-swelling, anti-fouling performance in underwater strain sensing—work that has since garnered 99 citations and addressed a critical challenge in aquatic robotics and marine exploration. That same year, he contributed to the development of multifunctional conductive hydrogels incorporating antibacterial and UV-blocking capabilities for skin-attachable bioelectronics, reflecting his commitment to practical, safety-conscious wearable design. More recently, He has pushed boundaries in tactile intelligence, developing a bimodal tactile sensor array with sub-milliscale resolution that mimics human graphesthesia, and a bioinspired self-powered optical tactile sensing system offering ultrahigh sensitivity for human-machine interaction applications. These innovations reduce reliance on complex circuitry while enhancing precision—a significant step toward sustainable, embodied intelligent systems. His growing body of work positions him as a promising voice in the future of soft robotics and smart sensing.
Research Focus
Key Achievements
Top Papers
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