Papers
4
Total Citations
217
H-Index
4
About
Yongji Li is a pioneering researcher at the intersection of bio-inspired materials, wearable electronics, and intelligent sensing systems. His work centers on developing next-generation flexible sensors that mimic the human nervous system, integrating advanced nanomaterials for multifunctional performance. Li’s most impactful contribution is his 2024 study on modified graphene nanoplatelets and cellulose nanofibers, which created wearable sensors with superior thermal management and electromagnetic interference shielding—garnering 118 citations for its breakthrough approach to solving heat accumulation and signal interference in electronic components. He further advanced the field with a self-powered, resilient porous sensor combining thermoelectric polymers and carbon nanotubes, achieving 60 citations for enabling simultaneous temperature and pressure detection without external power sources. Li also explores bionic light-responsive hydrogel actuators capable of multiple-freedom motions in water, pushing the boundaries of soft robotics. His earlier work on industrial robot joint stiffness identification using 3D digital image correlation demonstrates versatility in precision manufacturing. With over 200 total citations and a clear trajectory toward sustainable, bio-inspired electronics, Li is shaping the future of wearable technology and smart materials.
Research Focus
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Top Papers
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