Papers

3

Total Citations

49

H-Index

3

About

Xinyi Ji is a rising innovator in the field of flexible electronics and bioinspired tactile sensing, with a focus on developing next-generation wearable devices for human-machine interaction. Their research centers on MXene-based nanocomposites, leveraging the material’s exceptional conductivity and mechanical properties to create highly sensitive, durable, and self-adhesive hydrogel pressure sensors. Ji’s most-cited work, a 2024 study on MXene-based hydrogels, achieved 27 citations for its breakthrough in combining ultrasensitivity with toughness, enabling precise motion monitoring and robotic tactile feedback. A subsequent nacre-inspired MXene film further advanced piezoresistive sensing, achieving broad-range sensitivity with 18 citations. Ji’s recent 2025 paper on artificial flexible closed-loop tactile systems (4 citations) marks a pivotal step toward mimicking human tactile perception for prosthetics and intelligent robotics. By integrating self-adhesion, broad sensing ranges, and closed-loop feedback, Ji’s contributions are shaping the future of soft robotics and wearable health monitors. Their work exemplifies how bioinspired design and advanced materials can bridge the gap between human touch and artificial systems, offering transformative potential for assistive technologies.

Research Focus

Key Achievements

3
H-Index
3
Papers
49
Total Citations
16
Avg Citations/Paper
🏆 Most Cited Paper
MXene-based self-adhesive, ultrasensitive, highly tough flexible hydrogel pressure sensors for motion monitoring and robotic tactile sensing
27 citations · 2024
📈 Most Prolific Year: 2024 (2 Papers)
🤝 Key Collaborators: 17
🏛 Institutions: China University of Petroleum, East China, Nankai University

Top Papers

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Key Collaborators

Contact & Links

Available for collaboration
Content generated · 13 days ago