Papers
1
Total Citations
23
H-Index
1
About
Junrui Tan is an emerging leader in the field of polymer composites and thermal management materials, whose work focuses on developing stretchable, high-performance elastomers for next-generation flexible electronics. Tan’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 novel approach to overcoming the longstanding trade-off between thermal conductivity and mechanical flexibility in silicone-based materials. By employing a multi-scale filler architecture—integrating micro- and nano-sized thermally conductive particles—Tan demonstrates how to achieve a synergistic enhancement of both heat dissipation and mechanical robustness, a critical advance for wearable devices and soft robotics. This work has already garnered attention for its practical design strategy, offering a scalable pathway to create elastomers that can withstand repeated deformation while efficiently managing heat. Tan’s contributions are particularly notable for bridging materials science and engineering, providing a foundation for more reliable, high-performance flexible electronics. With a growing citation record and a clear focus on solving real-world thermal management challenges, Junrui Tan is a researcher to watch in the development of advanced functional composites.
Research Focus
Key Achievements
Top Papers
- 1