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Effect of alkali ions on the amorphous to crystalline phase transition of silica

机译:碱离子对二氧化硅无定形至结晶相变的影响

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摘要

The effect of the addition of alkali ions to commercial amorphous silica, generally used as support for heterogeneous catalysts, has been investigated from the point of view of morphological and structural changes. Samples of alkali-doped silica were prepared by impregnation and subsequent calcination at various temperatures. The structural effect of Li, Na, K and Cs was determined by use of techniques such as wide-angle (WAXS) and small-angle X-ray scattering (SAXS). The WAXS diffractograms, analyzed with the Rietveld method using the GSAS program, allowed qualitative and quantitative identification of the fraction of the different silica polymorphs like quartz, tridymite, and cristobalite. SAXS measurements, using the classical method based on Porod's law, yielded the total surface area of the systems. The calculated areas were compared with the surface areas determied by the nitrogen adsorption technique using the analytical method of Brunauer-Emmett-Teller. The results are explained in terms of sizes of the alkali ions and cell volume of the different crystalline phases.
机译:从形态和结构变化的观点,已经研究了将碱金属离子加到通常用作多相催化剂载体的市售无定形二氧化硅中的作用。通过浸渍和随后在不同温度下煅烧来制备碱掺杂二氧化硅的样品。 Li,Na,K和Cs的结构效应是通过使用诸如广角(WAXS)和小角X射线散射(SAXS)之类的技术确定的。使用Rietveld方法使用GSAS程序分析的WAXS衍射图可定性和定量鉴定不同的二氧化硅多晶型物(例如石英,鳞石英和方石英)的分数。使用基于Porod定律的经典方法进行的SAXS测量得出了系统的总表面积。使用Brunauer-Emmett-Teller的分析方法,将计算的面积与通过氮吸附技术确定的表面积进行比较。用碱金属离子的大小和不同晶相的晶胞体积来解释结果。

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