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Modern Inorganic Aerogels

机译:现代无机气凝胶

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Essentially, the term aerogel describes a special geometric structure of matter. It is neither limited to any material nor to any synthesis procedure. Hence, the possible variety of materials and therefore the multitude of their applications are almost unbounded. In fact, the same applies for nanoparticles. These are also just defined by their geometrical properties. In the past few decades nano-sized materials have been intensively studied and possible applications appeared in nearly all areas of natural sciences. To date a large variety of metal, semiconductor, oxide, and other nanoparticles are available from colloidal synthesis. However, for many applications of these materials an assembly into macroscopic structures is needed. Here we present a comprehensive picture of the developments that enabled the fusion of the colloidal nanoparticle and the aerogel world. This became possible by the controlled destabilization of pre-formed nanoparticles, which leads to their assembly into three-dimensional macroscopic networks. This revolutionary approach makes it possible to use precisely controlled nanoparticles as building blocks for macroscopic porous structures with programmable properties.
机译:基本上,Airgel术语描述了一种特殊的几何结构。它既不限于任何材料,也不是任何合成程序。因此,可能的各种材料,因此众多的应用几乎无限地。实际上,这同样适用于纳米颗粒。这些也仅由其几何特性定义。在过去的几十年里,已经集中研究了纳米大小的材料,并且可能存在于几乎所有自然科学领域的应用。迄今为多,可以从胶体合成获得各种金属,半导体,氧化物和其他纳米颗粒。然而,对于这些材料的许多应用,需要组装进入宏观结构。在这里,我们展示了一种发展的全面形式,使胶体纳米粒子和气凝胶世界的融合能够融合。通过预形成的纳米颗粒的受阻稳定化,这成为可能的,这导致其组装成三维宏观网络。这种革命性方法使得可以使用精确控制的纳米粒子作为具有可编程性质的宏观多孔结构的构建块。

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