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A new and generic preparation method of mesoporous clay composites containing dispersed metal oxide nanoparticles

机译:包含分散的金属氧化物纳米粒子的介孔粘土复合材料的新通用制备方法

摘要

Nanosized oxide precursors of various transitional metals, including iron, chromium, cobalt, manganese and cerium, were prepared by dissolving their corresponding hydroxides in acetic acid solutions. These precursors were used to substitute the sodium ions in laponite clay like the way to prepare pillared clays, forming mesoporous solids with high surface areas of ca. 510-640 m(2)/g. Stabilised by the adsorbed acetic acid molecules, the nanoparticle precursors of the metal oxides were well dispersed on the silicate platelets during the synthesis. The increase in the porosity after the intercalation of nanoparticles is primarily interpreted in terms of further delamination of the laponite clay caused by the reaction between the acidic metal precursor solutions and the silicate platelets. The clay composites containing nanoparticles of cobalt oxide appeared much more active than the impregnated cobalt catalysts in the deep oxidation of volatile organic compounds. (c) 2008 Elsevier Inc. All rights reserved.
机译:各种过渡金属(包括铁,铬,钴,锰和铈)的纳米氧化物前体是通过将其相应的氢氧化物溶解在乙酸溶液中而制得的。这些前体被用来代替锂皂石粘土中的钠离子,就像制备柱状粘土的方法一样,形成具有高表面积的介孔固体。 510-640 m(2)/ g。通过吸附的乙酸分子稳定,在合成过程中,金属氧化物的纳米颗粒前体很好地分散在硅酸盐血小板上。嵌入纳米颗粒后孔隙率的增加主要是由于酸性金属前体溶液与硅酸盐薄片之间的反应引起的锂皂石粘土进一步分层而引起的。在挥发性有机化合物的深度氧化中,含有氧化钴纳米颗粒的粘土复合材料比浸渍的钴催化剂更具活性。 (c)2008 Elsevier Inc.保留所有权利。

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