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Ordered Mesoporous Alumina-supported Metal Oxides

机译:有序介孔氧化铝负载金属氧化物

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The one-pot synthesis of alumina-supported metal oxides via self-assembly of a metal precursor and aluminum isopropoxide in the presence of triblock copolymer (as a structure directing agent) is described in detail for nickel oxide. The resulting mesoporous mixed metal oxides possess p6mm hexagonal symmetry, well-developed mesoporosity, relatively high BET surface area, large pore widths, and crystalline pore walls. In comparison to pure alumina, nickel aluminum oxide samples exhibited larger mesopores and improved thermal stability. Also, long-range ordering of the aforementioned samples was observed for nickel molar percentages as high as 20%. The generality of the recipe used for the synthesis of mesoporous nickel aluminum oxide was demonstrated by preparation of other alumina-supported metal oxides such as MgO, CaO, TiO_2, and Cr_2O_3. This method represents an important step toward the facile and reproducible synthesis of ordered mesoporous alumina-supported materials for various applications where large and accessible pores with high loading of catalytically active metal oxides are needed.
机译:对于三氧化镍,详细描述了在三嵌段共聚物(作为结构定向剂)存在下通过金属前体和异丙醇铝的自组装一锅法合成氧化铝负载的金属氧化物的方法。所得的中孔混合金属氧化物具有p6mm的六边形对称性,发达的中孔性,相对较高的BET表面积,大孔宽度和结晶孔壁。与纯氧化铝相比,镍铝氧化物样品具有更大的中孔和更高的热稳定性。另外,对于镍摩尔百分数高达20%,观察到上述样品的远距离排序。通过制备其他氧化铝负载的金属氧化物如MgO,CaO,TiO_2和Cr_2O_3证明了用于合成介孔镍铝氧化物的配方的一般性。该方法代表了向容易且可重现的有序介孔氧化铝负载材料的合成迈出的重要一步,该材料可用于需要大而可及的孔以及高负载的催化活性金属氧化物的各种应用。

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