Thermal conductivity of polyurethane sheets containing beryllium oxide nanofibers
Polyvinyl alcohol/beryllium sulfate/polyethyleneimine (PVA/BeSO 4 /PEI) precursor nanofibers (NFs) was first fabricated to obtain PVA/BeSO 4 /PEI electrospun NFs by electrospinning technology, finally manufactured beryllium oxide (BeO) NFs followed by various heat treatment methods. The minimum calc...
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Veröffentlicht in: | RSC advances 2022-10, Vol.12 (46), p.3125-3134 |
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Hauptverfasser: | , , |
Format: | Artikel |
Sprache: | eng |
Schlagworte: | |
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Zusammenfassung: | Polyvinyl alcohol/beryllium sulfate/polyethyleneimine (PVA/BeSO
4
/PEI) precursor nanofibers (NFs) was first fabricated to obtain PVA/BeSO
4
/PEI electrospun NFs by electrospinning technology, finally manufactured beryllium oxide (BeO) NFs followed by various heat treatment methods. The minimum calcination temperature for pure BeO NFs was 1000 °C, and the minimum specific surface area (5.1 m
2
g
−1
) and pore volumes (0.0128 cm
3
g
−1
) were at 1300 °C. 46.18% Be and 53.82% O was measured in BeO NFs by X-ray photoelectron spectroscopy. BeO NFs were then impregnated with polyurethane (PU) aqueous solution to make PU/BeO NFs heat-dissipating sheet. This heat-dissipating sheet showed superior thermal conductivity (14.4 W m
−1
K
−1
) at 41.4 vol% BeO NFs content. The electrical insulating properties of the heat-dissipating sheet were likewise excellent (1.6 × 10
12
Ω
−1
). In this study, the author attempted to create a thermally conductive but electrically insulating PU/BeO NFs heat-dissipating sheet that could effectively eliminate generated heat from electric equipment.
The BeO NFs' elongated shape, which provides excellent heat pathways for the BeO NFs in the resin. |
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ISSN: | 2046-2069 2046-2069 |
DOI: | 10.1039/d2ra04666k |