Superhydrophobic silica aerogel powders with simultaneous surface modification, solvent exchange and sodium ion removal from hydrogels

被引:129
作者
Bhagat, Sharad D. [1 ]
Kim, Yong-Ha [1 ]
Suh, Kuen-Hack [1 ]
Ahn, Young-Soo [2 ]
Yeo, Jeong-Gu [2 ]
Han, Jong-Hun [3 ]
机构
[1] Pukyong Natl Univ, Fac Chem Engn, Pusan 608739, South Korea
[2] Korea Inst Energy Res, Adv Energy Mat Res Dept, Taejon 305343, South Korea
[3] Korea Elect Technol Inst, Songnam 463816, Gyeonggi do, South Korea
关键词
silica aerogel; sodium silicate; surface chemical modification; one-step solvent exchange; sodium ion removal; EDS; FE-SEM; BET surface area; PSD;
D O I
10.1016/j.micromeso.2007.10.030
中图分类号
O69 [应用化学];
学科分类号
081704 ;
摘要
We report a novel method for the rapid synthesis of superhydrophobic silica aerogel powders based on an inexpensive precursor such as sodium silicate via ambient pressure drying. The sodium silicate was directly polymerized without prior ion exchange by the addition of nitric acid and hexamethyldisilazane (HMDS) to yield silylated hydrogels. The indispensable steps such as surface modification, solvent exchange and sodium ion removal were simultaneously accomplished in one-step by immersing the silylated hydrogel in a non-polar solvent such as n-hexane. The organic modification in the aqueous phase, i.e. in the hydrogel essentially led to the displacement of pore water and simultaneous intrusion of n-hexane transformed the hydrogel into an organo-gel. During this process, sodium ions present in the hydrogel were removed with the displaced pore water. Using this process, it was possible to produce superhydrophobic silica aerogel powders with contact angle as high as 150 degrees, very low tapping density of 0.08 g/cm(3), high specific surface area (778 m(2)/g) and cumulative pore volume of 2.34 cm(3)/g. The total processing time of the aerogel powders could be restricted to 5 h. The textural properties of the aerogel powders have been investigated and discussed. (C) 2007 Elsevier Inc. All rights reserved.
引用
收藏
页码:504 / 509
页数:6
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