Jiliang Mu
Papers
6
Total Citations
89
H-Index
4
About
Dr. Jiliang Mu is a leading researcher in flexible electronics and bioinspired sensor systems, with a focus on developing next-generation tactile and physiological monitoring technologies. His work centers on high-performance flexible sensors, including piezoresistive and piezoelectric devices, often leveraging advanced nanomaterials like PZT nanofibers and nanowires to achieve unprecedented sensitivity and resolution. A major contribution is his development of a high-resolution flexible sensor array using PZT nanofibers (2019, 36 citations), which addresses critical limitations in sensitivity and fabrication cost for electronic skin applications. He further advanced the field with a flexible wide-range multidimensional force sensor inspired by bone-muscle structures (2024, 19 citations), overcoming challenges in output performance and unidirectional force detection. His innovations extend to porous fiber paper-based piezoresistive sensors for physiological signal monitoring (2022, 18 citations) and PZT nanowire-modified graphene stress/strain sensors (2020, 10 citations). Dr. Mu has also explored thermal cyclization polyacrylonitrile to enhance piezoelectric performance in electronic skin (2024) and pioneered motor behavior regulation in rat robots using integrated micro-nervous system electrodes (2024). His work bridges materials science, bioinspiration, and robotics, with growing impact in wearable health and human-machine interaction.
Research Focus
Key Achievements
Top Papers
- 1A high-resolution flexible sensor array based on PZT nanofibers36 citations · 2019
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