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Crosslinking Amine-Modified Silica Aerogels with Epoxies: Mechanically Strong Lightweight Porous MaterialsThe mesoporous surfaces of TMOS-derived silica aerogels have been modified with amines by co-polymerization of TMOS with APTES. The amine sites have become anchors for crosslinking the nanoparticles of the skeletal backbone of the aerogel by attachment of di-, tri and tetra-functional epoxies. The resulting conformal coatings increase the density of the native aerogels by a factor of 2-3 but the strength of the resulting materials may increase by more than two orders of magnitude. Processing variables such as amount of APTES used to make the gels, the epoxy type and concentration used for crosslinking, as well as the crosslinking temperature and time were varied according to a multivariable design-of-experiments (DOE) model. It was found that while elastic modulus follows a similar trend with density, maximum strength is attained neither at the maximum density nor at the highest concentration of -NH2 groups, suggesting surface saturation effects. Aerogels crosslinked with the tri-functional epoxide always show improved strength compared with aerogels crosslinked with the other two epoxides under identical conditions. Solid C-13 NMR studies show residual unreacted epoxides, which condense with ne another by heating crosslinked aerogels at 150 C.
Document ID
20050123913
Acquisition Source
Glenn Research Center
Document Type
Preprint (Draft being sent to journal)
Authors
Meador, Mary Ann B.
(NASA Glenn Research Center Cleveland, OH, United States)
Fabrizio, Eve F.
(Ohio Aerospace Inst. Cleveland, OH, United States)
Ilhan, Faysal
(Ohio Aerospace Inst. Cleveland, OH, United States)
Dass, Amala
(Missouri Univ. Rolla, MO, United States)
Zhang, Guo-Hui
(Missouri Univ. Rolla, MO, United States)
Vassilaras, Plousia
(Ohio Aerospace Inst. Cleveland, OH, United States)
Johnston, J. Chris
(Ohio Aerospace Inst. Cleveland, OH, United States)
Leventis, Nicholas
(NASA Glenn Research Center Cleveland, OH, United States)
Date Acquired
September 7, 2013
Publication Date
January 1, 2005
Subject Category
Inorganic, Organic And Physical Chemistry
Report/Patent Number
E-15035
Report Number: E-15035
Funding Number(s)
OTHER: 22-714-85-08
Distribution Limits
Public
Copyright
Public Use Permitted.
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