Fabrication and characterization of TEOS-based silica aerogels prepared using rapid supercritical extraction

被引:0
作者
Suzanne K. Estok
Thomas A. Hughes
Mary K. Carroll
Ann M. Anderson
机构
[1] Union College,Department of Chemistry
[2] Union College,Department of Mechanical Engineering
来源
Journal of Sol-Gel Science and Technology | 2014年 / 70卷
关键词
Aerogel fabrication; Aerogel characterization; Silica aerogel; Rapid supercritical extraction (RSCE); Tetraethylorthosilicate (TEOS);
D O I
暂无
中图分类号
学科分类号
摘要
Silica aerogels were prepared using the precursor tetraethylorthosilicate (TEOS) via a rapid supercritical extraction (RSCE) method. Multiple consistent batches of monolithic TEOS-based aerogels were fabricated via an 8-h RSCE process. Fabricating TEOS-based aerogels with an RSCE method offers some distinct advantages. One advantage is the relative simplicity of the RSCE approach: liquid precursors are mixed and poured into a metal mold in a hydraulic hot-press, where gelation, aging and extraction of liquid from the pores occur. The precursor recipe employs TEOS, ethanol, water, oxalic acid to catalyze hydrolysis, and ammonia to catalyze the subsequent polycondensation reactions. Another advantage is that reaction of TEOS to form sol gels yields ethanol as a byproduct. A process that releases ethanol, rather than methanol (as in tetramethylorthosilicate (TMOS)-based aerogels) may be more appealing for commercial applications, involving scale-up of the process. The significantly lower cost of TEOS, compared to TMOS, is a considerable advantage. The TEOS-based RSCE aerogels are mesoporous and optically translucent, have bulk densities of 0.099(±0.003) g/cm3 and surface areas of 460(±10) m2/g. Signals observed in infrared and Raman spectra of the aerogels are consistent with Si–O framework bonds. Using scanning electron microscopy imaging, the surface morphology of the aerogel samples was imaged at magnifications up to 150 kX.
引用
收藏
页码:371 / 377
页数:6
相关论文
共 70 条
  • [1] Pajonk GM(1997)Effect of catalysts and metal dopants on monolithicity and physical properties of TEOS silica aerogels J Mater Synth Process 5 403-410
  • [2] Rao AV(2006)Effect of processing temperature on gelation and physical properties of low density TEOS based silica serogels J Sol Gel Sci Technol 38 55-61
  • [3] Wagh PB(2004)Synthesis and physical properties of TEOS-based silica aerogels prepared by two step (acid-base) sol–gel process Solid State Sci 6 945-952
  • [4] Haranath D(2002)Synthesis of silica aerogels from waterglass via new modified ambient drying J Mater Sci 37 2237-2241
  • [5] Hegde ND(2004)A fast supercritical extraction technique for aerogel fabrication J Non Cryst Solids 350 238-243
  • [6] Rao AV(2009)Silica aerogels prepared via rapid supercritical extraction: effect of process variables on aerogel properties J Non Cryst Solids 355 101-108
  • [7] Rao AV(2004)Aerogel-platform optical sensors for oxygen gas J Non Cryst Solids 350 326-335
  • [8] Bhagat SD(2011)Use of a rapid supercritical extraction method to prepare aerogels from various precursor chemistries Polymer Preprints 52 31-32
  • [9] Lee CJ(2010)Hydrophobic silica aerogels prepared via rapid supercritical extraction J Sol Gel Sci Technol 53 199-207
  • [10] Kim GS(2012)Fabrication of titania and titania-silica aerogels using rapid supercritical extraction J Sol Gel Sci Technol 62 404-413