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Surface silylation and pore structure development of silica aerogel composites from colloid and TEOS-based precursor

Authors
Kim, Chang-YeoulJang, A-RumKim, Byung-IkSuh, Dong-Hack
Issue Date
Dec-2008
Publisher
SPRINGER
Keywords
Surface silylation; Pore structure; Aerogel; Composites; Condensation
Citation
JOURNAL OF SOL-GEL SCIENCE AND TECHNOLOGY, v.48, no.3, pp.336 - 343
Indexed
SCIE
SCOPUS
Journal Title
JOURNAL OF SOL-GEL SCIENCE AND TECHNOLOGY
Volume
48
Number
3
Start Page
336
End Page
343
URI
https://scholarworks.bwise.kr/hanyang/handle/2021.sw.hanyang/177609
DOI
10.1007/s10971-008-1814-0
ISSN
0928-0707
Abstract
Flexible aerogel-fiber composites were prepared by silylation and ambient drying of colloidal silica and tetraethylorthosilicate (TEOS)-based sol. After immersing glass fiber matrices into silica sol with colloid-based, colloid/TEOS-based, and TEOS-based silica sol, it was surface-modified in a trimethylchlorosilane/n-hexane solution and heat-treated at 230 degrees C in ambient atmosphere. Surface silylation of silica aerogel synthesized from colloid and TEOS-based silica sols showed different behaviors. For colloid silica gel, it was comprised of small sized mesopores because colloid-based silica gel has dense networks through great degrees of hydrolysis and condensation. On the contrary, TEOS-based aerogel was consisted of relatively large-sized pores because of comparatively lesser degree of hydrolysis and condensation. Through this study, we can know that the pore structures of silica aerogel could be controlled by choosing colloid or TEOS-based precursor and surface silylation reaction.
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