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• 研究论文 • 上一篇    

疏水型SiO2气凝胶

邓忠生1; 魏建东1; 吴爱梅2; 暴玉萍1; 王珏1; 沈军1; 周斌1; 陈玲燕1   

  1. 1. 同济大学波耳固体物理研究所, 上海 200092; 2. 上海化工研究院, 上海 200062
  • 收稿日期:1999-05-10 修回日期:1999-05-26 出版日期:2000-04-20 网络出版日期:2000-04-20

Hydrophobic Sio2 Aerogels Prepared with Polyethoxydisiloxanes

DENG Zhong-Sheng1; WEI Jian-Dong1; Wu Ai-Mei2; BAO Yu-Ping1; WANG Jue1; SHEN Jun1; ZHOU Bin1; CHEN Ling-Yan 1   

  1. 1. Pohl Institute of Solid State Physics; Tongji University; Shanghai 200092; China; 2. Shanghai Institute of Chemical Engineering; Shanghai 200062; China
  • Received:1999-05-10 Revised:1999-05-26 Published:2000-04-20 Online:2000-04-20

摘要: 以多聚硅为硅源,通过溶胶-凝胶、表面修饰及超临界干燥过程制备出了疏水型SiO气凝胶.表面修饰后SiO气凝胶孔洞由修饰前的23.1nm减小到18.2nm;比表面积由修饰前的 477m2g-1增加到 563m2g-1,骨架颗粒比修饰前略大,饱和水蒸汽吸附量由吸附前的0.04(重量比)降低到0.0012,且与水不浸润.

关键词: 疏水, SiO2气凝胶, 溶胶-凝胶, 表面修饰, 超临界干燥

Abstract: Hydrophobic SiO2 aerogels were produced by the surface modification of alcogels prepared via sol-gel process using polyethoxydisiloxanes (E-40) as
the precursor and followed by ethanol supercritical drying. The structure of the modified silica aerogels was a silica matrix produced by hydrolysis and
condensation of polyethoxydisiloxanes. Si-CH3 was modified on the surface of the silica matrix. The pore size decreased from 23.1nm to 18.2nm, the
specific surface area increased from 477 m2·g-1 to 563 m2·g-1 and the water vapor adsorption decreased from 0.04 to 0.0012(weight ratio)
after the surface modification of silica aerogels. The existence of Si-CH3 was observed using infrared spectra.

Key words: hydrophobic, SiO2 aerogel, sol-gel, surface modification, super critical drying

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