Papers
2
Total Citations
112
H-Index
2
About
Jiaojun Tan is a leading researcher in advanced flexible electronics and multifunctional polymer composites, with a focus on developing next-generation wearable sensors and soft robotic materials. Their work centers on two key innovations: creating robust, hydrophobic pressure sensors using MXene/aramid nanofiber aerogel films, and engineering healable, tear-resistant polyurethane-urea elastomers for strain sensors. Tan’s 2022 paper on the MXene/ANF aerogel film (72 citations) introduced a groundbreaking three-dimensional composite that combines flexibility, hydrophobicity, and multifunctionality—overcoming critical challenges in smart wearable device fabrication. Their 2022 study on double-modified poly(urethane-urea) (40 citations) achieved a rare balance between mechanical robustness, tear resistance, and self-healing capability, addressing a long-standing trade-off in elastomer design. These contributions have garnered significant attention, with Tan’s work cited over 112 times collectively, demonstrating substantial impact in materials science and engineering. By solving fundamental challenges in sensor durability and versatility, Tan’s research paves the way for practical applications in health monitoring, soft robotics, and human-machine interfaces. Their innovative approaches to aerogel architecture and polymer modification continue to inspire new directions in flexible electronics.
Research Focus
Key Achievements
Top Papers
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