Papers

4

Total Citations

214

H-Index

4

About

Xiaoxiao Huang is a leading researcher in flexible and stretchable electronics, with a focus on nanocomposite materials for advanced sensing and actuation. Her work centers on developing high-performance strain sensors and soft robotic systems using graphite nanoplatelet (GNP)-based composites. Huang’s major contributions include the creation of a highly sensitive flexible strain sensor using graphite nanoplatelets, which has garnered 56 citations, and the development of electro-thermally driven flexible robot arms based on stacking-controlled graphite nanocomposites (53 citations). She also pioneered sheath–core fiber strain sensors that leverage in-situ crack and elastic effects in GNP composites (52 citations), significantly enhancing sensitivity and durability. Additionally, her recent review on anti-freezing, anti-drying, and anti-swelling conductive hydrogels (53 citations) addresses critical challenges in environmental tolerance for soft-wet materials, expanding their applicability in harsh conditions. With over 200 cumulative citations, Huang’s innovations are pivotal for healthcare monitoring, robotics, and mechatronics, offering scalable solutions for next-generation flexible electronics. Her interdisciplinary approach bridges materials science and engineering, making her a key figure in the field.

Research Focus

Key Achievements

4
H-Index
4
Papers
214
Total Citations
54
Avg Citations/Paper
🏆 Most Cited Paper
A graphite nanoplatelet-based highly sensitive flexible strain sensor
56 citations · 2020
📈 Most Prolific Year: 2019 (2 Papers)
🤝 Key Collaborators: 40
🏛 Institutions: Harbin Institute of Technology, Xi'an University of Science and Technology

Top Papers

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Key Collaborators

Contact & Links

Available for collaboration
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