Xiaoli Jia
Papers
3
Total Citations
12
H-Index
2
About
Xiaoli Jia’s research lies at the dynamic intersection of flexible electronics, micro-electro-mechanical systems (MEMS), and advanced sensor design, with a focus on creating high-performance devices for real-world applications. Her most notable contribution is the design and application of a new high-performance flexible six-axis force/torque sensor for massage therapy (2024, 7 citations), a breakthrough that bridges soft robotics and biomedical engineering by enabling precise, multi-directional force sensing in compliant, wearable formats. Jia has also pioneered a high-sensitivity wearable flexible strain sensor based on a three-dimensional twist-like network structure (2023, 3 citations), addressing the critical challenge of achieving high sensitivity, low cost, and simple fabrication in flexible pressure sensors for wearable devices and medical monitoring. Earlier, she explored the instability of functionally graded micro-beams under thermal-mechanical-electrical multifield coupling (2021, 2 citations), contributing foundational knowledge to MEMS reliability. Her work demonstrates a rare ability to move from fundamental mechanics to applied device engineering, making her a rising figure in the development of next-generation flexible sensors for healthcare and human-machine interaction.
Research Focus
Key Achievements
Top Papers
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