This monograph systematically explores the interfacial heat transfer enhancement mechanism of carbon nanotube (CNT) assembly structures, addressing the critical bottleneck of low thermal conductivity caused by weak inter-tube coupling. The book investigates the effects of various microstructures (halogen molecules, polypyrrole chains, metal structures, linear carbon chains, etc.) on CNT interfacial heat transfer, revealing the core mechanisms of low-frequency resonance induction and additional heat transfer channel construction.
This monograph systematically explores the interfacial heat transfer enhancement mechanism of carbon nanotube (CNT) assembly structures, addressing the critical bottleneck of low thermal conductivity caused by weak inter-tube coupling. The book investigates the effects of various microstructures (halogen molecules, polypyrrole chains, metal structures, linear carbon chains, etc.) on CNT interfacial heat transfer, revealing the core mechanisms of low-frequency resonance induction and additional heat transfer channel construction.
Hanying Zou
Carbon nanotubes Interfacial heat transfer Microstructure loading Thermal enhancement Molecular dynamics simulation Phonon Halogen molecules Polypyrrole Metal nanoclusters Linear carbon chains