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Highly stable, mesoporous mixed lanthanum–cerium oxides with tailored structure and reducibility

机译:高度稳定的介孔混合镧铈氧化物,具有定制的结构和可还原性

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摘要

Pure and mixed lanthanum and cerium oxides were synthesized via a reverse microemulsion-templated route. This approach yields highly homogeneous and phase-stable mixed oxides with high surface areas across the entire range of La:Ce ratios from pure lanthana to pure ceria. Surprisingly, all mixed oxides show the fluorite crystal structure of ceria, even for lanthanum contents as high as 90%. Varying the La:Ce ratio not only allows tailoring of the oxide morphology (lattice parameter, pore structure, particle size, and surface area), but also results in a fine-tuning of the reducibility of the oxide which can be explained by the creation of oxygen vacancies in the ceria lattice upon La addition. Such finely controlled syntheses, which enable the formation of stable, homogeneous mixed oxides across the entire composition range, open the path towards functional tailoring of oxide materials, such as rational catalyst design via fine-tuning of redox activity.
机译:通过反向微乳液模板化路线合成了纯的和混合的镧和铈氧化物。这种方法可在从纯镧系到纯氧化铈的整个La:Ce比范围内产生具有高表面积的高度均匀且相稳定的混合氧化物。出乎意料的是,即使镧含量高达90%,所有混合氧化物都显示出二氧化铈的萤石晶体结构。改变La:Ce的比例不仅可以调整氧化物的形态(晶格参数,孔结构,粒径和表面积),而且可以对氧化物的可还原性进行微调,这可以通过创建La添加后二氧化铈晶格中氧空位的变化这种精细控制的合成使得能够在整个组成范围内形成稳定,均质的混合氧化物,从而为实现氧化物材料的功能调整开辟了道路,例如通过微调氧化还原活性进行合理的催化剂设计。

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