Song Huijun, Zhang Li, Xu Guancheng, Zhang Chi, Ma Xin, Zhang Lu, Jia Dianzeng
Key Laboratory of Energy Materials Chemistry (Xinjiang University), Ministry of Education Urumqi Xinjiang 830046 P. R. China
Key Laboratory of Advanced Functional Materials Autonomous Region Urumqi Xinjiang 830046 P. R. China.
RSC Adv. 2018 Jul 10;8(44):24805-24811. doi: 10.1039/c8ra04081h. eCollection 2018 Jul 9.
Metal-organic framework (MOF)-based derivatives with uniform micro/mesoporous structures have attracted a great deal of interest in various research fields. Herein, we report a simple strategy to design functional mesoporous ternary metal oxides with controlled composition through direct pyrolysis of Co/Cu bimetal-formate frameworks (Co/Cu-MFFs), which were prepared by a facile one-step liquid-phase precipitation method, exhibiting uniform distribution of two different metal species and good structural integrity. The obtained mesoporous ternary metal oxide Cu Co O ( = 0.5, 1) microcubes exhibit much better performance for CO oxidation than pure CoO, which can be mainly attributed to their larger specific surface areas, stronger reducibility, and the synergistic effect of two active metal oxide components.
具有均匀微/介孔结构的金属有机框架(MOF)基衍生物在各个研究领域引起了广泛关注。在此,我们报告了一种简单的策略,通过直接热解钴/铜双金属甲酸盐框架(Co/Cu-MFFs)来设计具有可控组成的功能性介孔三元金属氧化物,Co/Cu-MFFs通过简便的一步液相沉淀法制备,呈现出两种不同金属物种的均匀分布和良好的结构完整性。所获得的介孔三元金属氧化物CuₓCo₁₋ₓO(x = 0.5,1)微立方体在CO氧化方面表现出比纯CoO更好的性能,这主要归因于它们更大的比表面积、更强的还原性以及两种活性金属氧化物组分的协同效应。