首页> 外文期刊>The journal of physical chemistry, C. Nanomaterials and interfaces >Ultrasound-Assisted Nanocasting Fabrication of Ordered Mesoporous MnO2 and Co3O4 with High Surface Areas and Polycrystalline Walls
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Ultrasound-Assisted Nanocasting Fabrication of Ordered Mesoporous MnO2 and Co3O4 with High Surface Areas and Polycrystalline Walls

机译:具有高表面积和多晶壁的有序介孔MnO2和Co3O4的超声辅助纳米铸造制备

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摘要

Highly ordered mesoporous MnO2 and Co3O4 are prepared by adopting an SBA-16-based nanocasting strategy under ultrasonic irradiation and characterized by means of numerous techniques. It is shown that the as-fabricated manganese and cobalt oxides possess well-ordered mesoporous architectures with polycrystalline pore walls. With the assistance of ultrasonic waves, the metal precursors can readily diffuse from the bulk solution to the inner pores of the silica template. The repeated four-step fabrication process, filling - filtration - washing - calcination, is beneficial for preventing the formation of manganese or cobalt oxide nanoparticles on the external surfaces of the template and facilitating more metal precursors to fill the mesopore channels of the template. After removal of the silica template by a 2 mol/L NaOH aqueous solution, the as-received highly ordered mesoporous MnO2 and Co3O4 exhibit a surface area of up to 266 and 313 m~2/g, respectively, which is about 2-3 times higher than that reported in the literature. The mesoporous MnO2 and Co3O4 samples are more readily reduced at low temperatures and show much better catalytic performance for toluene complete oxidation than their bulk counterparts. The excellent performance of the mesoporous materials is ascribed to their ordered mesoporous structure, better reducibility, and high surface area.
机译:通过在超声辐射下采用基于SBA-16的纳米浇铸策略来制备高度有序的介孔MnO2和Co3O4,并通过多种技术对其进行了表征。结果表明,制成的锰氧化物和钴氧化物具有带多晶孔壁的有序介孔结构。借助于超声波,金属前体可以容易地从本体溶液扩散到二氧化硅模板的内孔。重复的四步制造过程(填充-过滤-洗涤-煅烧)有利于防止锰或钴氧化物纳米颗粒在模板的外表面上形成,并有助于更多的金属前体填充模板的中孔通道。用2 mol / L NaOH水溶液除去二氧化硅模板后,按原样接收的高度有序的介孔MnO2和Co3O4的表面积分别高达266和313 m〜2 / g,约为2-3。比文献报道的高出三倍。 MnO2和Co3O4介孔样品在低温下更容易还原,并且对甲苯完全氧化显示出比其本体对应物更好的催化性能。中孔材料的优异性能归因于它们的有序中孔结构,更好的还原性和高表面积。

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