首页> 外文期刊>Journal of nanoscience and nanotechnology >Scalable Preparation of Alginate Templated-Layered Double Hydroxide Mesoporous Composites with Enhanced Surface Areas and Surface Acidities
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Scalable Preparation of Alginate Templated-Layered Double Hydroxide Mesoporous Composites with Enhanced Surface Areas and Surface Acidities

机译:具有增强的表面积和表面酸度的藻酸盐模板层状双氢氧化物介孔复合材料的可扩展制备

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摘要

Layered double hydroxides (LDHs), also known as hydrotalcite-like layered clays, have previously been investigated as a potential solid alkaline catalyst. A necessary calcinations/rehydration procedure, however, is utilized to enhance surface area and catalytic activity of LDHs involved. Here we report on a scalable preparation of sodium alginate-templated MgAl-LDH (LDH/SA) mesoporous composites with high surface area and surface acidity. The powdery LDH/SA mesoporous composites are prepared using alginate as template by a scalable method of separate nucleation and aging steps (SNAS). Comparison with the pristine MgAI-LDH shows that the obtained LDH/SA composites exhibit the greatly enhanced surface area and surface activity of surface acid sites at the elevated high temperatures which have scarcely been reported previously. Our results may allow designing a variety of mesoporous LDH-containing composites with potential applications in specific catalysis and purification processes.
机译:层状双氢氧化物(LDHs),也称为类水滑石层状粘土,先前已被研究为潜在的固体碱性催化剂。但是,必须进行必要的煅烧/再水化程序以增加所涉及的LDH的表面积和催化活性。在这里,我们报告了具有高表面积和表面酸度的海藻酸钠模板MgAl-LDH(LDH / SA)介孔复合材料的可扩展制备方法。粉末状的LDH / SA介孔复合材料是以藻酸盐为模板,通过可扩展的分离成核和老化步骤(SNAS)的方法制备的。与原始MgAl-LDH的比较表明,所获得的LDH / SA复合材料在高温下具有大大提高的表面积和表面酸位点的表面活性,这在以前很少报道。我们的结果可能允许设计各种潜在的含有LDH的中孔复合材料,并在特定的催化和纯化工艺中具有潜在的应用前景。

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