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首页> 外文期刊>Catalysis Today >Synthesis of CeO2, ZrO2, Ce_(0.5)Zr_(0.5)O2, and TiO2 nanopartides by a novel oil-in-water microemulsion reaction method and their use as catalyst support for CO oxidation
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Synthesis of CeO2, ZrO2, Ce_(0.5)Zr_(0.5)O2, and TiO2 nanopartides by a novel oil-in-water microemulsion reaction method and their use as catalyst support for CO oxidation

机译:新型水包油微乳液反应法合成CeO2,ZrO2,Ce_(0.5)Zr_(0.5)O2和TiO2纳米粒子及其作为CO氧化的催化剂载体

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摘要

A novel and straightforward approach for the synthesis of mesoporous inorganic oxide nanopartides, with a small particle size and high specific surface area is reported, by using oil-in-water microemul-sions, in contrast to the typically used water-in-oil microemulsion method. The new strategy implies the use of organometallic precursors, dissolved in nanometer-scale oil droplets (stabilised by surfactant), and dispersed in a continuous aqueous phase. The potential of this approach is explored for producing nanocrystalline ceria, zirconia, ceria/zirconia mixed oxide and titania. Nanocrystalline cubic CeO2 and Ce_(0.5)Zr_(0.5)O2 were obtained under soft conditions, whilst Zr02 and TiO2 presented wide X-ray diffraction peaks. The specific surface area (SSA) of the obtained materials was in the order of 200-370 m2/g and the particle size was very small (~2-3 nm). The materials were calcined at 400 °C after which a high SSA was maintained (100-150 m2/g) and the crystallinity was improved, yielding tetragonal phases for both TiO2 (anatase) and ZrO2. The potential of the calcined materials as catalyst support was explored in the CO oxidation reaction by doping the oxides with Au (2wt%). The obtained results demonstrate the feasibility of this approach for the preparation of various supports with high SSA for catalytic purposes.
机译:据报道,与通常使用的油包水型微乳液相反,通过使用水包油型微乳液,可以合成具有小粒径和高比表面积的介孔无机氧化物纳米粒子的新颖,直接的方法。方法。新策略意味着使用有机金属前体,将其溶解在纳米级油滴中(由表面活性剂稳定)并分散在连续的水相中。探索了该方法在生产纳米晶体二氧化铈,氧化锆,二氧化铈/氧化锆混合氧化物和二氧化钛方面的潜力。纳米晶立方CeO 2和Ce_(0.5)Zr_(0.5)O 2在软条件下获得,而ZrO 2和TiO 2呈现宽的X射线衍射峰。所得材料的比表面积(SSA)约为200-370平方米/克,并且粒度非常小(〜2-3nm)。将该材料在400°C下煅烧,然后保持较高的SSA(100-150 m2 / g),并提高结晶度,从而生成TiO2(锐钛矿)和ZrO2的四方相。通过在氧化物中掺入Au(2wt%),探索了煅烧材料作为催化剂载体的潜力。获得的结果证明了该方法用于制备具有高SSA的各种载体用于催化目的的可行性。

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