Structural Evolution and Catalytic Properties of Nanostructured Cu/ZrO 2 Catalysts Prepared by Oxalate Gel-Coprecipitation Technique

共沉淀 单斜晶系 煅烧 立方氧化锆 材料科学 草酸盐 无机化学 拉曼光谱 催化作用 分析化学(期刊) 结晶学 化学 晶体结构 冶金 有机化学 光学 物理 陶瓷
作者
Lu‐Cun Wang,Qian Liu,Miao Chen,Yongmei Liu,Yong Cao,He,Kangnian Fan
出处
期刊:Journal of Physical Chemistry C [American Chemical Society]
卷期号:111 (44): 16549-16557 被引量:159
标识
DOI:10.1021/jp075930k
摘要

A series of zirconia-supported copper oxide catalysts synthesized by decomposition of the oxalate precursors formed by oxalate gel-coprecipitation in alcoholic solution were extensively investigated in relation to their performance in methanol steam reforming. The combination of different techniques (N 2 adsorption, X-ray diffraction (XRD), N 2 O titration, H 2 -TPR, diffuse reflectance Fourier transform infrared, Raman, and X-ray photoelectron spectroscopy) in the characterization of Cu/ZrO 2 catalysts shows that the surface and structural characteristics of the zirconia phase as well as the dispersion and nature of the copper species depend strongly on the calcination temperature. Temperature-programmed reduction patterns reveal the presence of three types of copper species on the ZrO 2 support. XRD results indicate that, depending on the calcination temperature, a substantial incorporation of Cu species into the zirconia lattice leading to a strong Cu−ZrO 2 metal−support interaction may occur. The N 2 O titration reveals that the 550 °C calcined material exhibits the highest metallic copper surface area as compared to other samples, as opposed to in situ XRD analysis showing that the lower the calcination temperature the higher the copper dispersion. Spectroscopic measurements reveal that the phase transformation of zirconia from tetragonal to monoclinic takes place initially at the surface regions of the Cu−ZrO 2 sample, as evidenced from the fact that the monoclinic phase can be detected first by Raman spectroscopies for the samples calcined at a lower temperature than by XRD. The highest activity was achieved for the 550 °C calcined material, illustrating that the creation of monoclinic phase enriched on the surface of tetragonal zirconia in Cu/ZrO 2 are beneficial for the generation of copper catalyst with enhanced activities.
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