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Synthesis, characterization and catalytic properties of CuO nanocrystals with various shapes

机译:不同形状的CuO纳米晶体的合成,表征和催化性能

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CuO nanocrystals with different shapes, i.e. irregular nanoparticles, nanobelts and nanoplatelets, have been synthesized by controlling a few critical synthesis parameters to explore their catalytic properties. It was found that the rate of CO oxidation on the nanoplatelets is over six times higher than that on the nanoparticles and about three times higher than that on the nanobelts at 110 degrees C. Based on combined characterizations, such as BET, XRD, TEM, HRTEM and CO temperature-programmed reduction, the relationship between the catalytic reactivity and the shape as well as the predominantly exposed crystal planes of the CuO nanocrystals has been discussed.
机译:通过控制一些关键的合成参数以探索其催化性质,已经合成了具有不同形状的CuO纳米晶体,即不规则的纳米颗粒,纳米带和纳米片。发现在110摄氏度下,纳米片上的CO氧化速率比纳米颗粒上的CO氧化速率高出六倍以上,而比纳米带上的CO氧化速率高出三倍。基于BET,XRD,TEM,讨论了HRTEM和CO程序升温还原,催化反应性与CuO纳米晶体的形状以及主要暴露的晶面之间的关系。

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