首页> 外文期刊>Journal of nanoscience and nanotechnology >Control of Flexibility, Pore Structure and Hydrophobicity of Tetraethylorthosilicate/Methyltriethoxysilane Aerogels by Hybridization
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Control of Flexibility, Pore Structure and Hydrophobicity of Tetraethylorthosilicate/Methyltriethoxysilane Aerogels by Hybridization

机译:通过杂交控制柔韧性,孔隙结构和四乙酯/甲基三乙氧基硅烷气凝胶的疏水性

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摘要

The flexibility, pore structures and hydrophobicity could be controlled by changing TEOS/MTEOS ratio. 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 gelation of MTEOS. Therefore, increasing of MTEOS ratio forms larger pore sizes and large primary particles with about one micrometer. MTEOS-based aerogels show the lowest specific area due to macropores with more than one thousand nanometers, although they are very flexible to elongate two times as long as their original sample length. For TEOS/MTEOS hybrid aerogels with 0.4-0.6 of TEOS ratio, they have the large 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:通过改变TEOS / MTEOS比率,可以控制灵活性,孔隙结构和疏水性。 MTEOS的甲基官能团导致水解和缩合反应的难度,从而需要加入强的碱性催化剂用于MTEOS的凝胶化。因此,增加MTEOS比形成较大的孔尺寸和大约一微米的大初级颗粒。基于MTEOS的Aerogels显示出由于宏观的最低特定区域,巨大的千千岁,虽然它们非常灵活地伸长两次,只要其原始样本长度即可。对于TEOS比率0.4-0.6的TEOS / MTEOS混合气凝胶,它们具有大的比表面积和孔体积,由于剩余的烷基官能团,具有一点柔韧性和疏水性。本研究介绍了通过醇盐和硅烷杂交来控制柔韧性,孔隙结构,疏水性的可能性。它表明一种克服硅气凝胶等弱点等脆性和亲水性的方法。

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