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Ambient pressure dried tetrapropoxysilane-based silica aerogels with high specific surface area
Institution:1. Université de La Rochelle, Laboratoire des Sciences de L''Ingénieur pour l''Environnement (LaSIE, FRE-CNRS3474), Avenue Michel Crépeau, 17042 La Rochelle cedex 01, France;2. Department of Materials Science and Engineering, Yonsei University, Seoul 120-749, South Korea;1. Shandong Provincial Key Laboratory of Building Materials Preparation and Testing Technology, University of Jinan, Jinan, 250022, China;2. Shandong Quanjian Engineering Testing co. ltd, Jinan, 250014, China;3. College of Engineering, Ocean University of China, Qingdao, 266100, China
Abstract:In the present paper, we report the synthesis of tetrapropoxysilane (TPOS)-based silica aerogels with high surface area and large pore volume. The silica aerogels were prepared by a two-step sol-gel process followed by surface modification via a simple ambient pressure drying approach. In order to minimize drying shrinkage and obtain hydrophobic aerogels, the surface of the alcogels was modified using trichloromethylsilane as a silylating agent. The effect of the sol-gel compositional parameters on the polymerization of aerogels prepared by TPOS, one of the precursors belonging to the Si(OR)4 family, was reported for the first time. The oxalic acid and NH4OH concentrations were adjusted to achieve good-quality aerogels with high surface area, low density, and high transparency. Controlling the hydrolysis and condensation reactions of the TPOS precursor turned out to be the most important factor to determine the pore characteristics of the aerogel. Highly transparent aerogels with high specific surface area (938 m2/g) and low density (0.047 g/cm3) could be obtained using an optimized TPOS/MeOH molar ratio with appropriate concentrations of oxalic acid and NH4OH.
Keywords:Silica aerogels  Tetrapropoxysilane  Ambient pressure drying  Surface area  Hydrophobicity
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