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Thermal and Surface Properties of Phenolic Nanocomposites Containing Octaphenol Polyhedral Oligomeric Silsesquioxane

โœ Scribed by Han-Ching Lin; Shiao-Wei Kuo; Chih-Feng Huang; Feng-Chih Chang


Publisher
John Wiley and Sons
Year
2006
Tongue
English
Weight
128 KB
Volume
27
Category
Article
ISSN
1022-1336

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โœฆ Synopsis


Abstract

Summary: We have synthesized a new polyhedral oligomeric silsesquioxane (POSS) containing eight phenol functional groups and copolymerized it with phenol and formaldehyde to form novolacโ€type phenolic/POSS nanocomposites exhibiting high thermal stabilities and low surface energies. Our DSC results indicate that the glass transition temperature of these nanocomposites increased initially upon increasing their POSS content, but then decreased at POSS content above 10 wt.โ€%, presumably because of the formation of relatively low molecular weight species and POSS aggregation as evidenced from MALDIโ€TOF mass analyses. Our TGA analyses indicated that the 5โ€wt.โ€%โ€massโ€loss temperatures (T~d~) increased significantly upon increasing the POSS content because the incorporation of the POSS led to the formation of an inorganic protection layer on the nanocomposite's surface. XPS and contact angle data provided positive evidence to back up this hypothesis. In addition, contact angle measurements indicated a significant enhancement in surface hydrophobicity after increasing the POSS content.

Syntheses procedures of phenolic/OPโ€POSS nanocomposites.

magnified imageSyntheses procedures of phenolic/OPโ€POSS nanocomposites.


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Poly(vinyl pyrrolidone-co-octavinyl poly
โœ Benhong Yang; Jirong Li; Jiafeng Wang; Hongyao Xu; Shangyi Guang; Cun Li ๐Ÿ“‚ Article ๐Ÿ“… 2009 ๐Ÿ› John Wiley and Sons ๐ŸŒ English โš– 112 KB ๐Ÿ‘ 1 views

## Abstract A series of poly(vinyl pyrrolidoneโ€__co__โ€octavinyl polyhedral oligomeric silsesquioxanes) (PVPโ€POSS) organicโ€“inorganic hybrid nanocomposites containing different percentages of POSS were prepared via free radical polymerization and characterized by FTIR, highโ€resolution ^1^Hโ€NMR, solid