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首页> 外文期刊>Journal of Materials Science >Modifying the surface energy and hydrophobicity of the low-density silica aerogels through the use of combinations of surface-modification agents
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Modifying the surface energy and hydrophobicity of the low-density silica aerogels through the use of combinations of surface-modification agents

机译:通过使用表面改性剂的组合来改变低密度二氧化硅气凝胶的表面能和疏水性

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Aerogels are lightweight, highly transparent, thermally insulating materials comprising interconnected nanostructured pores. Low surface energy aerogels were prepared from ambient pressure drying of sodium silicate-based gels by modifying the pore surfaces with silylating agents including trimethylchlorosilane (TMCS), hexamethyldisiloxane (HMDSO), and hexamethyldisilazane (HMDZ), in combination with each other. Hydrophobic properties of the resulted aerogels were studied by contact angle measurements. Fourier-transform infrared spectroscopy (FTIR) was used to monitor the changes in chemical bonds within the aerogels due to surface modification. The microstructure was studied by transmission electron microscopy (TEM). Effect of temperature on the hydrophobicity of the aerogels was studied by thermogravimetric analysis/differential thermal analysis (TGA-DTA). Surface modification of silica gels with various mixtures of surface-modification agents showed different behaviors. Aerogels made by HMDZ and HMDSO combination comprised 5 nm pores and particles and showed a high surface energy, whereas aerogels prepared by HMDSO and TMCS combination had lower surface energy with relatively larger particle and pore sizes with a more uniform distribution of both. The properties of the latter sample were attributed to a greater degree of surface modification and negligible condensation of OH groups. This preparation produced silica aerogels with a low density (0.042 g/cc), low surface energy (3.39 N cm−1), low thermal conductivity (0.050 W K−1 m−1), high optical transmission (85% at 700 nm) and hydrophobic (154° contact angle) with high hydrophobic thermal stability (425 °C). Moreover, the contact angle for materials prepared by this method decreased negligibly over 12 months’ storage in ambient conditions.
机译:气凝胶是轻质的,高度透明的,包含相互连接的纳米结构孔的隔热材料。低表面能气凝胶是由硅酸钠基凝胶在环境压力下干燥而制得的,方法是用甲硅烷基化剂(包括三甲基氯硅烷(TMCS),六甲基二硅氧烷(HMDSO)和六甲基二硅氮烷(HMDZ))相互结合来修饰孔表面。通过接触角测量研究了所得气凝胶的疏水性。傅里叶变换红外光谱(FTIR)用于监测由于表面改性而引起的气凝胶内化学键的变化。通过透射电子显微镜(TEM)研究了微观结构。通过热重分析/差热分析(​​TGA-DTA)研究了温度对气凝胶疏水性的影响。用各种表面改性剂混合物对硅胶进行的表面改性表现出不同的行为。由HMDZ和HMDSO组合制得的气凝胶包含5 nm的孔和颗粒,并显示出较高的表面能,而由HMDSO和TMCS组合制得的气凝胶具有较低的表面能,具有相对较大的颗粒和孔径,且两者均分布更均匀。后一个样品的特性归因于更大程度的表面改性和可忽略的OH基缩合。该制备方法生产的二氧化硅气凝胶具有低密度(0.042 g / cc),低表面能(3.39 N cm -1 ),低导热率(0.050 WK -1 m -1 ),高透光率(在700 nm处为85%)和疏水性(接触角为154°)以及疏水性高的热稳定性(425°C)。此外,用这种方法制备的材料在环境条件下存放12个月后,其接触角减小到可以忽略的程度。

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