首页> 外文期刊>Asian Journal of Chemistry: An International Quarterly Research Journal of Chemistry >Control of Flexibility and Pore Structure of Tetraethylorthosilicate/ Methyltriethoxysilane Aerogels by Hybridization
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Control of Flexibility and Pore Structure of Tetraethylorthosilicate/ Methyltriethoxysilane Aerogels by Hybridization

机译:杂交控制原硅酸四乙酯/甲基三乙氧基硅烷气凝胶的柔性和孔结构

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摘要

We found that the flexibility, pore structures such as pore sizes, porosity and specific surface area could be controlled by changing ratio of tetraethylorthosilicate/methyltriethoxysilane (TEOS/MTEOS). A methyl functional group of MTEOS causes the difficulty of hydrolysis and condensation reactions, so that strong basic catalyst needs to be added for the gellation of MTEOS. Therefore, increasing of MTEOS ratio forms larger pore sizes and large primary particles with ca. 1 μm. MTEOS-based aerogels, show the lowest specific area due to macropores with more than 1000 nm, although they are very flexible to elongate two times as long as their original sample length. For TEOS/MTEOS hybrid aerogels with 1:1 molar ratio, they have the largest specific surface area and pore volume, a little flexibility and hydrophobicity due to the remaining alkyl functional groups. This research presents the possibility of controlling flexibility, pore structures, hydrophobicity through hybridization of alkoxide and silane. It suggests a way of overcoming weaknesses of silica aerogels like brittleness and hydrophilicity.
机译:我们发现,可通过改变原硅酸四乙酯/甲基三乙氧基硅烷(TEOS / MTEOS)的比例来控制柔性,孔结构(例如孔径,孔隙率和比表面积)。 MTEOS的甲基官能团导致水解和缩合反应困难,因此需要添加强碱性催化剂来胶凝MTEOS。因此,增加MTEOS的比例会形成较大的孔径和较大的初级颗粒,约为。 1微米基于MTEOS的气凝胶,由于具有大于1000 nm的大孔而显示出最低的比表面积,尽管它们非常灵活,可以伸长两倍于其原始样品长度。对于摩尔比为1:1的TEOS / MTEOS混合气凝胶,它们具有最大的比表面积和孔体积,由于剩余的烷基官能团而具有很小的柔韧性和疏水性。这项研究提出了通过醇盐和硅烷的杂交来控制柔韧性,孔结构,疏水性的可能性。它提出了一种克服二氧化硅气凝胶的弱点(如脆性和亲水性)的方法。

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