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首页> 外文期刊>Langmuir: The ACS Journal of Surfaces and Colloids >CeO2@SiO2 Core-Shell Nanostructure-Supported CuO as High-Temperature-Tolerant Catalysts for CO Oxidation
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CeO2@SiO2 Core-Shell Nanostructure-Supported CuO as High-Temperature-Tolerant Catalysts for CO Oxidation

机译:CeO2 @ SiO2核 - 壳纳米结构支撑的CuO作为用于共同氧化的高温耐催化剂

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摘要

Supported CuO-CeO2 catalysts have been extensively studied for their outstanding catalytic activity in CO oxidation. Unfortunately, they are prone to sintering and deactivation when exposed to high-temperature automotive exhausts. Herein, taking advantage of the heat-resistant SiO2 microspheres, we fabricated a series of core-shell-structured yCuO-xCeO(2)@SiO2 (x is the weight ratio of CeO2-SiO2 and y is the weight ratio of Cu-(CeO2@SiO2)) composite catalysts. All the small CeO2 particles were bound to the SiO2 spheres, forming an xCeO(2)@SiO2 structure, on the surface of which a certain amount of CuO was well-dispersed. The SCuO-50CeO(2)@SiO2 catalyst exhibited good activity, with the full conversion of CO achieved at around 130 degrees C, and no obvious deactivation was observed in the stability test. Importantly, the interaction between CuO and CeO2@SiO2 enhanced its durability at high temperatures. Even at 800 degrees C and with a space velocity of 800 000 mL.g(cat)(-1).h(-1), CO conversion could be maintained at 90%, which is prospectively applied in a real CO elimination system. The result of the temperature-programmed reduction in hydrogen demonstrated that this special core-shell-structured SCuO-50CeO(2)@SiO2 catalyst improved the reduction ability of the CuO species. In situ diffuse reflectance infrared Fourier transform spectroscopy measurements further confirmed that CO molecules preferred to be adsorbed on Cu(I) species to form reactive CO-Cu(I) that enhanced the reactivity of the 5CuO-50CeO(2)@SiO2 catalyst.
机译:支持的CuO-CeO 2催化剂已经广泛研究了它们在CO氧化中的优异催化活性。不幸的是,当暴露于高温汽车尾气时,它们易于烧结和停用。在此,利用耐热的SiO 2微球,我们制造了一系列核 - 壳结构的Ycuo-Xceo(2)/ 2(x是CeO2-SiO2和Y的重量比是Cu-( CEO2 @ SiO2))复合催化剂。所有小CEO2颗粒都与SiO 2球体结合,形成XCEO(2)/ / / SiO 2结构,在其表面上井下分散。 SCUO-50CEO(2)/ SiO 2催化剂表现出良好的活性,通过在约130℃下实现的CO全转化,并且在稳定性测试中没有观察到明显的失活。重要的是,CuO和CeO2之间的相互作用在高温下提高了其耐久性。即使在800℃下并且具有800000毫升(猫)( - 1).h(-1)的空间速度,CO转化率可以保持在90%,这是在真正的CO消除系统中进行的前瞻性应用。氢气温度减少的结果表明,这种特殊的核 - 壳结构的SCUO-50CEO(2)+ SiO2催化剂改善了CuO物种的降低能力。原位漫反射率红外傅里叶变换光谱测量进一步证实,优选的CO分子吸附在Cu(I)种上,形成反应性Co-Cu(I),其增强了5Cuo-50CeO(2)催化剂的反应性。

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    Shandong Univ Sch Chem &

    Chem Engn Key Lab Special Aggregated Mat Key Lab Colloid &

    Interface Chem Jinan 250100 Shandong Peoples R China;

    Shandong Univ Sch Chem &

    Chem Engn Key Lab Special Aggregated Mat Key Lab Colloid &

    Interface Chem Jinan 250100 Shandong Peoples R China;

    Shandong Univ Sch Chem &

    Chem Engn Key Lab Special Aggregated Mat Key Lab Colloid &

    Interface Chem Jinan 250100 Shandong Peoples R China;

    Shandong Univ Sch Chem &

    Chem Engn Key Lab Special Aggregated Mat Key Lab Colloid &

    Interface Chem Jinan 250100 Shandong Peoples R China;

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  • 正文语种 eng
  • 中图分类 物理化学(理论化学)、化学物理学;化学;
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