Sanwei Hao

Beijing Forestry University

Papers

5

Total Citations

683

H-Index

5

About

Sanwei Hao is a materials scientist whose research sits at the intersection of smart materials, flexible electronics, and sustainable biomaterials. His work has made significant contributions to the development of conductive hydrogels for next-generation wearable sensing technologies, with a particular focus on overcoming critical fabrication and performance challenges that have long hindered practical applications. Hao's most influential contribution, cited over 255 times, introduced a tannic acid–silver dual catalysis strategy enabling rapid synthesis of stretchable, self-adhesive conductive hydrogels at ambient temperature — a breakthrough that simplified manufacturing while preserving exceptional sensing performance. His subsequent work on lignin-encapsulated silica nanoparticle-reinforced hydrogels (195 citations) further advanced mechanical robustness and adhesion, addressing persistent limitations in wearable electronics. Notably, he has also tackled environmental challenges in hydrogel design, developing zwitterionic formulations with low-temperature tolerance (139 citations) and authoring influential reviews on freeze-resistant platforms for flexible electronics. More recently, Hao has pioneered sustainable photothermal elastomers based on lignin, demonstrating a commitment to green material innovation. Collectively, his body of work — accumulating over 680 citations — positions him as a rising and impactful voice in the fields of smart materials and bio-inspired flexible electronics.

Research Focus

Key Achievements

5
H-Index
5
Papers
683
Total Citations
137
Avg Citations/Paper
🏆 Most Cited Paper
Tannic Acid–Silver Dual Catalysis Induced Rapid Polymerization of Conductive Hydrogel Sensors with Excellent Stretchability, Self-Adhesion, and Strain-Sensitivity Properties
255 citations · 2020
📈 Most Prolific Year: 2020 (1 Papers)
🤝 Key Collaborators: 19
🏛 Institutions: Beijing Forestry University

Top Papers

  1. 1
  2. 2
  3. 3
  4. 4
  5. 5

Key Collaborators

Contact & Links

Available for collaboration
Content generated · 13 days ago