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首页> 外文期刊>RSC Advances >Ultrasonic-spray-assisted synthesis of metal oxide hollow/mesoporous microspheres for catalytic CO oxidation
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Ultrasonic-spray-assisted synthesis of metal oxide hollow/mesoporous microspheres for catalytic CO oxidation

机译:超声喷涂辅助合成金属氧化物空心/中微球用于催化CO氧化

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摘要

Transition metal oxides with hollow or mesoporous microstructures represent a unique class of heterogeneous catalysts or catalyst supports with many fascinating features such as the large surface areas, tunable pore sizes and volumes, multitude of compositions, and ease of functionalization. In this work, we demonstrated a general ultrasonic-spray-assisted synthesis of various transition metal oxide hollow/mesoporous microspheres, using only low-cost commercial metal chlorides as precursors and water as solvent. As typical examples, five mono-component metal oxides (CeO2, alpha-Fe2O3, Co3O4, SnO2 and TiO2) hollow or mesoporous microspheres were prepared and their formation mechanisms were discussed. The catalytic carbon monoxide (CO) oxidation indicated that these metal oxide products exhibited improved catalytic activities than some of those reported previously, due to their tiny crystalline grains, large pore volume and specific surface area. The universality of this synthetic method was also demonstrated in producing multi-component and multi-functional metal oxides with hollow/mesoporous structures. This work therefore provides an industrial level producing method for the scalable preparation of various metal oxide hollow/mesoporous microspheres which are expected to be used as high-performance catalysts or catalyst supports in more chemical reactions.
机译:具有中空或中孔微观结构的过渡金属氧化物代表一类独特的非均相催化剂或催化剂载体,具有许多引人入胜的特征,例如大表面积,可调节的孔径和体积,多种组成以及易于官能化。在这项工作中,我们展示了一种通用的超声喷雾辅助合成方法,仅使用低成本的商业金属氯化物作为前体,而水作为溶剂,可以合成各种过渡金属氧化物空心/介孔微球。作为典型实例,制备了五种单组分金属氧化物(CeO2,α-Fe2O3,Co3O4,SnO2和TiO2)空心或中孔微球,并讨论了它们的形成机理。催化一氧化碳(CO)氧​​化表明,这些金属氧化物产品由于其微小的晶粒,大的孔体积和比表面积而具有比以前报道的某些产品更高的催化活性。这种合成方法的普遍性还被证明可以生产具有中空/中孔结构的多组分和多功能金属氧化物。因此,这项工作提供了工业规模的生产方法,用于可规模地制备各种金属氧化物空心/中微球,这些微球有望在更多的化学反应中用作高性能催化剂或催化剂载体。

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