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IR-spectroscopical investigations on the glass structure of porous and sintered compacts of colloidal silica gels

机译:胶体硅胶多孔烧结致孔玻璃结构的IR光谱研究

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The forming and sintering of fumed silica powders is an interesting route for the preparation of large, very pure or doped silica glasses with a precise geometry. The processing from the shaping of a porous compact to the sintering of transparent silica glass can be successfully investigated with optical spectroscopy. As only the dielectric function DF (a dielectric function is the square root of the complex refractive index) characterizes the material, the vibrational bands were calculated from reflectance measurements. In compacts of fine particles, the topology cannot be neglected. Therefore, the models describing topological effects are briefly reviewed. With these model calculations it could be proven that new bands in the compacts and the significant shifts in the reflectance spectra during sintering are mainly caused by topological effects and that changes in the glass structure play only a secondary role.
机译:气相二氧化硅粉的成型和烧结是一种有趣的途径,用于制备具有精确几何形状的大型非常纯净或掺杂的硅胶。可以通过光学光谱成功地研究来自透明二氧化硅玻璃的烧结的多孔结构的整形的处理。仅作为材料的介质功能DF(介电函数是复折射率的平方根),表征了材料,从反射率测量计算振动带。在细颗粒的块状中,拓扑不能被忽略。因此,简要介绍了描述拓扑效应的模型。利用这些模型计算,可以证明烧结期间压缩中的新条带和反射光谱中的显着变化主要是由拓扑效应引起的,并且玻璃结构的变化仅发挥二级作用。

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