Peili Guo

Tianjin University of Technology

Papers

1

Total Citations

139

H-Index

1

About

Peili Guo is a leading materials scientist recognized for pioneering advances in thermally conductive polymer composites. Her research centers on designing hierarchical filler networks to overcome the intrinsic thermal resistance of polymers, a critical challenge for next-generation electronics thermal management. Guo’s most impactful work introduces a bioinspired “leaf venation” structure using boron nitride, achieving record-high thermal conductivity through a two-level adjustable network that mimics nature’s efficient transport pathways. This 2022 paper, with 139 citations, demonstrates how structural engineering at multiple scales—from micron-scale veins to nanoscale filler alignment—can dramatically enhance heat dissipation without compromising mechanical flexibility. Beyond this flagship study, Guo’s broader contributions include developing scalable fabrication methods for composite films and elucidating the role of interfacial phonon scattering in hybrid filler systems. Her work bridges fundamental polymer physics with practical device integration, earning recognition from both academic and industrial sectors. For students and researchers, Guo’s research exemplifies how biomimicry and multiscale design can solve persistent material limitations, offering a blueprint for creating high-performance thermal interface materials essential for 5G, electric vehicles, and compact electronics.

Research Focus

Key Achievements

1
H-Index
1
Papers
139
Total Citations
139
Avg Citations/Paper
🏆 Most Cited Paper
Highly thermally conductive polymer composite enhanced by two-level adjustable boron nitride network with leaf venation structure
139 citations · 2022
📈 Most Prolific Year: 2022 (1 Papers)
🤝 Key Collaborators: 6
🏛 Institutions: Tianjin University of Technology

Top Papers

  1. 1

Key Collaborators

Contact & Links

Available for collaboration
Content generated · 11 days ago