Papers

5

Total Citations

154

H-Index

4

About

Ziyin Xiang is a rising leader in flexible electronics and smart materials, pioneering the development of magnetosensitive and pressure-sensing devices for wearable technology, robotics, and digital healthcare. Their major contributions include advancing flexible magnetosensitive materials for wearable electronics, designing high-strain stable pressure sensors via DLP 3D printing, and creating self-supported β-Ga₂O₃ nanowires for stretchable solar-blind UV photodetectors—critical for fire rescue robots. Xiang’s work on low-hysteresis topological magnetized elastomers and optimized magnetization distributions in body-centered cubic lattice-structured magnetoelastomers has pushed the boundaries of robotic tactile sensing and 3D force detection. With over 150 citations across their most-cited papers, including the highly influential 2024 review on flexible magnetosensitive devices (83 citations) and the 2023 study on high-strain stable pressure sensors (54 citations), Xiang’s research is shaping the next generation of soft, stretchable, and highly sensitive electronic skins. Their innovative use of 3D-printed microstructures and magnetic field engineering addresses critical challenges in sensor hysteresis, sensitivity, and adaptability, marking Xiang as a key innovator in the intersection of materials science and intelligent systems.

Research Focus

Key Achievements

4
H-Index
5
Papers
154
Total Citations
31
Avg Citations/Paper
🏆 Most Cited Paper
Advances in Flexible Magnetosensitive Materials and Devices for Wearable Electronics
83 citations · 2024
📈 Most Prolific Year: 2025 (3 Papers)
🤝 Key Collaborators: 29
🏛 Institutions: Chinese Academy of Sciences, Zhejiang Wanli University

Top Papers

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Key Collaborators

Contact & Links

Available for collaboration
Content generated · 13 days ago