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Mixing and packing of binary hydrophobic silica aerogels

机译:二元疏水性二氧化硅气凝胶的混合与包装

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摘要

Particulate hydrophobic silica aerogel (Cabot Nanogel) is extremely porous, has the lowest density and lowest thermal conductivity of any solid, and is a much better insulator than air. Therefore it is advantageous to mix coarse and fine Nanogel particles to produce a uniform mixture that has a packing density (or bulk density) that is higher than that of either of the particles by themselves. A simple method to mix binary particles together without segregation is to add a small amount of liquid in a slowly rotating tumbler mixer. However, if water is used, the hydrophobicity of the Nanogel surface will repel the water and if an organic solvent is used, the solvent will simply enter the pores of the Nanogel. In this paper we use an ethanol water solution that has a lower surface tension than water, and a contact angle close to 90° so that it can wet the surface of the coarse particles without entering the pores. The mixtures so produced are very uniform without segregation and have packing densities very close to the predicted theoretical maximum for binary particles.
机译:疏水性二氧化硅微粒气凝胶(Cabot Nanogel)具有极高的多孔性,是所有固体中密度最低和导热系数最低的,并且是比空气更好的绝缘体。因此,有利的是将粗的和细的纳米凝胶颗粒混合以产生均匀的混合物,该混合物的堆积密度(或堆积密度)高于任一颗粒本身的堆积密度。将二元颗粒混合在一起而不分离的一种简单方法是在缓慢旋转的滚筒式混合器中添加少量液体。然而,如果使用水,则纳米凝胶表面的疏水性将排斥水,并且如果使用有机溶剂,则溶剂将仅进入纳米凝胶的孔。在本文中,我们使用的乙醇水溶液的表面张力比水低,接触角接近90°,因此它可以润湿粗颗粒的表面而不会进入孔隙。如此产生的混合物非常均匀而没有偏析,并且堆积密度非常接近二元颗粒的预测理论最大值。

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