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Controlling particle morphology and size in the synthesis of mesoporous SBA-15 materials

机译:在合成中孔SBA-15材料的合成中控制颗粒形态和尺寸

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Plate-like particles of SBA-15 form from smaller units (primary particles) that aggregate in an oriented manner. In this report we influence this aggregation by adding salt to the ongoing synthesis, generating well-ordered hexagonal p6m structure (SBA-15), with varying particle diameters. The additions, with either NaCl or Nal, were made at a time corresponding to the onset of oriented aggregation. Both salts promote the aggregation and particles with diameters of up to 5 μm were obtained. The thickness, about 0.4 urn, of the particles was retained, in accordance with the proposed growth mechanism. The aggregation characteristic was dependent on the salt used and the concentration of the salt. Both the cation and the anion were found to influence the aggregation. Having salt present already at the start of the synthesis gave a different product. The particle formation process depends on an interplay between attractive and repulsive forces between aggregates. We interpret the observed effect of salt addition to a medium which already has a very high ionic strength (1.6 M HCl) as due to ion binding to the combined polyethylene oxide—silica brush at the particles surface.
机译:SBA-15的板状颗粒从较小的单位(初级颗粒)以定向方式聚集。在本报告中,我们通过将盐添加到正在进行的合成中,产生这种聚集,产生有序有序的六边形P6M结构(SBA-15),具有不同的粒径。在对应于取向聚集的时间的时间下制备具有NaCl或NAL的添加。将两种盐促进均得到直径最高为5μm的聚集和颗粒。根据所提出的生长机制,保留约0.4瓮,颗粒的厚度约为0.4瓮。聚集特性取决于所用的盐和盐的浓度。发现阳离子和阴离子都会影响聚集。在合成开始时已经存在盐给出了不同的产品。颗粒形成过程取决于聚集体之间有吸引力和排斥力之间的相互作用。我们解释了对已经具有非常高离子强度(1.6M HCl)的培养基的观察到的盐的效果,因为在颗粒表面上与组合的聚环氧乙烷 - 二氧化硅刷子结合。

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