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控制生成均匀的球形 LaMnO3、LaCoO3、Mn2O3 和 Co3O4 纳米粒子及其对一氧化碳和甲苯氧化的高催化性能。

Controlled generation of uniform spherical LaMnO3, LaCoO3, Mn2O3, and Co3O4 nanoparticles and their high catalytic performance for carbon monoxide and toluene oxidation.

机构信息

Laboratory of Catalysis Chemistry and Nanoscience, Department of Chemistry and Chemical Engineering, College of Environmental and Energy Engineering, Beijing University of Technology, Beijing 100124, PR China.

出版信息

Inorg Chem. 2013 Aug 5;52(15):8665-76. doi: 10.1021/ic400832h. Epub 2013 Jul 12.

Abstract

Uniform hollow spherical rhombohedral LaMO3 and solid spherical cubic MOx (M = Mn and Co) NPs were fabricated using the PMMA-templating strategy. Hollow spherical LaMO3 and solid spherical MOx NPs possessed surface areas of 21-33 and 21-24 m(2)/g, respectively. There were larger amounts of surface-adsorbed oxygen species and better low-temperature reducibility on/of the hollow spherical LaMO3 samples than on/of the solid spherical MOx samples. Hollow spherical LaMO3 and solid spherical MOx samples outperformed their nanosized counterparts for oxidation of CO and toluene, with the best catalytic activity being achieved over the solid spherical Co3O4 sample for CO oxidation (T50% = 81 °C and T90% = 109 °C) at space velocity = 10,000 mL/(g h) and the hollow spherical LaCoO3 sample for toluene oxidation (T50% = 220 °C and T90% = 237 °C) at space velocity = 20,000 mL/(g h). It is concluded that the higher surface areas and oxygen adspecies concentrations and better low-temperature reducibility are responsible for the excellent catalytic performance of the hollow spherical LaCoO3 and solid spherical Co3O4 NPs. We believe that the PMMA-templating strategy provides an effective route to prepare uniform perovskite-type oxide and transition-metal oxide NPs.

摘要

采用 PMMA 模板法制备了均匀的中空球形三角面体 LaMO3 和实心球形立方 MOx(M = Mn 和 Co)纳米粒子。中空球形 LaMO3 和实心球形 MOx 纳米粒子的比表面积分别为 21-33 和 21-24 m2/g。中空球形 LaMO3 样品表面吸附的氧物种较多,低温还原性能优于实心球形 MOx 样品。与纳米级样品相比,中空球形 LaMO3 和实心球形 MOx 样品在 CO 和甲苯氧化方面表现出更好的催化活性,其中在流速为 10,000 mL/(g h)时,实心球形 Co3O4 样品对 CO 氧化的催化活性最佳(T50% = 81°C 和 T90% = 109°C),在流速为 20,000 mL/(g h)时,中空球形 LaCoO3 样品对甲苯氧化的催化活性最佳(T50% = 220°C 和 T90% = 237°C)。研究结果表明,较高的比表面积、氧吸附物种浓度和较好的低温还原性能是中空球形 LaCoO3 和实心球形 Co3O4 纳米粒子具有优异催化性能的原因。我们相信,PMMA 模板法为制备均匀的钙钛矿型氧化物和过渡金属氧化物纳米粒子提供了一种有效的途径。

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