Linpeng Liu
Papers
9
Total Citations
504
H-Index
8
About
Linpeng Liu is a leading researcher in bioinspired flexible electronics, with a focus on developing high-performance strain sensors for wearable and underwater applications. His work draws inspiration from natural systems—particularly arthropod sensilla—to create artificial hair-like and crack-based sensors that achieve remarkable fidelity, low hysteresis, and superhydrophobicity. Among his most impactful contributions is a bioinspired, superhydrophobic paper-based strain sensor (140 citations) that enables reliable human motion monitoring and underwater sensing, and a high-fidelity, low-hysteresis bionic flexible strain sensor (122 citations) designed for soft machines. Liu has also pioneered selective-response strain sensors using viscoelastic materials and a self-powered bionic perception neural device that harnesses ambient power frequency electric fields. His review articles on artificial hair-like sensors and arthropod-inspired crack sensors have become key references in the field. With over 500 cumulative citations, Liu’s innovations are driving advances in electronic skins, soft robotics, and human–machine interfaces, positioning him as a rising authority in bioinspired sensing and flexible electronics.
Research Focus
Key Achievements
Top Papers
- 1
- 2High-Fidelity, Low-Hysteresis Bionic Flexible Strain Sensors for Soft Machines122 citations · 2024
- 3Artificial Hair-Like Sensors Inspired from Nature: A Review71 citations · 2018
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- 6Crack-based and Hair-like Sensors Inspired from Arthropods: A Review34 citations · 2020
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