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Effect Of Protic Solvents On The Physical Properties Of The Ambient Pressure Dried Hydrophobic Silica Aerogels Using Sodium Silicate Precursor

机译:质子溶剂对使用硅酸钠前驱体的常压干燥疏水性二氧化硅气凝胶的物理性能的影响

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Considering the importance of the highly porous, low density, transparent and nanostructured hydro-phobic silica aerogels in the scientific and industrial applications, the experiments have been carried out to prepare the low density silica aerogels using the 1.12 specific gravity water glass (sodium silicate, Na_2SiO_3) precursor, ammonium hydroxide (NH_4OH) catalyst, trim-ethylchlorosilane (TMCS) silylating agent, various first exchanging protic solvents and hexane as a second exchanging aprotic solvent. The first exchanging solvents used were: methanol, ethanol, propanol, isopropanol, butanol, isobutanol and hexanol. The molar ratio of the Na_2SiO_3:H_2O:NH_4OH:TMCS was kept constant at 1:56:0.02:0.4 respectively. The ambient pressure dried method was used for the preparation of hydrophobic silica aerogels. The effect of the exchanging protic solvents on the physical properties of the aerogels such as density, % of volume shrinkage, % of porosity, % of optical transmission, thermal conductivity, thermal stability and contact angle of the aerogels with water, were studied. FTIR studies were carried out to confirm the silylation of the aerogel samples. It was found that the exchanging protic solvents have profound effect on the physical and hydro-phobic properties of the aerogels. Low density (0.07 g/ cm~3), high porosity (96.6 %), low thermal conductivity (0.091 W/mK), high contact angle (166°) silica aerogels could be prepared by using the isopropanol first exchanging solvent followed by the hexane as the second exchanging solvent along with the TMCS silylating agent with sodium silicate precursor.
机译:考虑到高孔隙率,低密度,透明和纳米结构的疏水性二氧化硅气凝胶在科学和工业应用中的重要性,已经进行了实验以使用1.12比重水玻璃(硅酸钠, Na_2SiO_3)前体,氢氧化铵(NH_4OH)催化剂,三乙基乙基氯硅烷(TMCS)甲硅烷基化剂,各种第一交换质子溶剂和己烷作为第二交换质子溶剂。使用的第一交换溶剂是:甲醇,乙醇,丙醇,异丙醇,丁醇,异丁醇和己醇。 Na_2SiO_3:H_2O:NH_4OH:TMCS的摩尔比分别保持恒定,为1:56:0.02:0.4。使用常压干燥法制备疏水性二氧化硅气凝胶。研究了质子交换溶剂对气凝胶物理性能的影响,例如密度,体积收缩率%,孔隙率%,透光率%,导热率,热稳定性和气凝胶与水的接触角。进行FTIR研究以确认气凝胶样品的甲硅烷基化。发现交换质子溶剂对气凝胶的物理和疏水性能具有深远的影响。低密度(0.07 g / cm〜3),高孔隙率(96.6%),低导热率(0.091 W / mK),高接触角(166°)二氧化硅气凝胶可以通过以下方法制备:首先使用异丙醇交换溶剂,然后进行作为第二种交换溶剂的己烷与TMCS甲硅烷基化剂与硅酸钠前体一起使用。

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