Xianwei Meng
Papers
1
Total Citations
23
H-Index
1
About
Xianwei Meng is a leading researcher in advanced polymer composites, with a focus on thermal management materials and stretchable electronics. Their work centers on developing innovative filler strategies to overcome the longstanding trade-off between thermal conductivity and mechanical flexibility in elastomers. Meng’s most-cited paper, “Multi-scale-filler reinforcement strategy enabled stretchable silicone elastomer with synergistically enhanced thermal conductivity and mechanical strength” (2023, 23 citations), introduces a groundbreaking approach that combines micro- and nano-scale fillers to create silicone elastomers with both high thermal conductivity and superior stretchability. This work has significant implications for next-generation wearable devices, soft robotics, and high-performance thermal interface materials. By demonstrating that multi-scale filler architectures can simultaneously improve heat dissipation and mechanical robustness, Meng has opened new pathways for designing durable, flexible electronics. Their research is widely recognized for its practical impact, offering scalable solutions for industries requiring efficient thermal management in deformable systems. Meng’s contributions continue to inspire advancements in polymer science and materials engineering.
Research Focus
Key Achievements
Top Papers
- 1