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Synthesis of high surface area CuMn2O4 by supercritical anti-solvent precipitation for the oxidation of CO at ambient temperature

机译:通过超临界抗溶剂沉淀的高表面积Cumn2O4合成CO在环境温度下的氧化

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摘要

A series of high surface area nanocrystalline copper manganese oxide catalysts have been prepared by supercritical anti-solvent (SAS) precipitation using CO2 and tested for the ambient temperature oxidation of CO. The catalysts were prepared by precipitation from an ethanol/metal acetate solution and the addition of small quantities of water was found to result in a mixed acetate precursor with surface areas >200 m~2 g~(-1), considerably higher than those prepared by conventional precipitation methods. The surface area of the final calcined mixed oxide was found to be dependent upon the initial water concentration. XRD and FT-IR analysis indicated that the addition of water promoted the formation of carbonate species in the amorphous acetate precursor, with high resolution TEM and STEM showing the material to consist of spherical agglomerations of fibrous strings of ca. 30 nm length. This is in contrast to the material prepared in the absence of water, using the same SAS methodology, which typically yields quasi-spherical particles of 100 nm size.
机译:一系列高表面积纳米晶铜氧化铜氧化催化剂已通过使用CO2的超临界抗溶剂(SAS)沉淀制备,并测试了CO的环境温度氧化。催化剂是通过乙醇/金属乙酸乙酯溶液和乙醇/金属乙酸盐溶液和发现少量水的添加可导致乙酸乙酸酯前体,表面积> 200 m〜2 g〜(-1),比通过常规沉淀方法制备的水高得多。发现最终钙化混合氧化物的表面积取决于初始水浓度。 XRD和FT-IR分析表明,加水促进了无定形乙酸酯前体中碳酸盐物质的形成,具有高分辨率的TEM和茎,表明材料由Ca的纤维琴弦组成。 30 nm长。这与在没有水的情况下制备的材料使用相同的SAS方法相反,SAS方法通常产生100 nm大小的准球形颗粒。

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