Papers
6
Total Citations
228
H-Index
6
About
Jianyu Huang is a pioneering researcher at the intersection of soft robotics, bioinspired design, and self-powered magnetoelectric sensing. His work focuses on integrating sensing and actuation capabilities into soft, deformable robots, drawing inspiration from natural systems like shark skin and plant structures. Huang’s major contributions include developing 3D-printed underwater super-oleophobic shark skin for electricity generation via magnetic nanofluid droplets (40 citations), and creating soft NdFeB/Ecoflex composites with remarkable magnetostimulated shrinkability for soft robot actuation (39 citations). He has also advanced self-powered magnetoelectric sensors—including ball-in-ball inertial sensors for 3D motion monitoring of humanoid robots (30 citations) and buoy structural sensors for tactile sensing and obstacle avoidance (23 citations). Notably, his carbon fabric-based tactile sensors demonstrate resistance to harsh acidic/alkaline environments (21 citations), enabling robust robot sensing. With over 228 cumulative citations across his most-cited works, Huang’s innovations in magnetoelectric conversion and soft material composites are driving next-generation flexible electronics, biomedical devices, and autonomous soft robots.
Research Focus
Key Achievements
Top Papers
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