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Synthesis and Catalytic Activity of Cu-Incorporated MCM-41 with Spheres-within-a-Sphere Hollow Structure

Synthesis and Catalytic Activity of Cu-Incorporated MCM-41 with Spheres-within-a-Sphere Hollow Structure
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摘要 Cu-incorporated ordered hexagonal mesoporous silicates (Cu-MCM-41) with spheres-within-a-sphere hollow structure have been synthesized using thermoreversible polymer hydrogel methylcellulose (MC) and cationic surfactant as co-templates, which have been characterized by scanning electron micrograph (SEM), X-ray diffraction (XRD), transmission electron micrograph (TEM), and N2 adsorption-desorption isotherms. The obtained results indicate that the morphology of Cu-incorporated MCM-41 materials is "spheres-within-a-sphere" hollow structure, which is very similar to that of the alveolus. In benzene hydroxylation with H2O2, the hollow spheres show much higher catalytic activity than particles of Cu-MCM-41. Cu-incorporated ordered hexagonal mesoporous silicates (Cu-MCM-41) with spheres-within-a-sphere hollow structure have been synthesized using thermoreversible polymer hydrogel methylcellulose (MC) and cationic surfactant as co-templates, which have been characterized by scanning electron micrograph (SEM), X-ray diffraction (XRD), transmission electron micrograph (TEM), and N2 adsorption-desorption isotherms. The obtained results indicate that the morphology of Cu-incorporated MCM-41 materials is "spheres-within-a-sphere" hollow structure, which is very similar to that of the alveolus. In benzene hydroxylation with H2O2, the hollow spheres show much higher catalytic activity than particles of Cu-MCM-41.
出处 《Chinese Journal of Chemistry》 SCIE CAS CSCD 2006年第11期1653-1656,共4页 中国化学(英文版)
基金 Project supported by the National Natural Science Foundation of China, the Major State Basic Research Development Program of China (Nos. 2004CB217804 and 2003CB615802), and Ministry of Education, China.
关键词 hollow sphere MCM-41 mesoporous material benzene hydroxylation HYDROGEL METHYLCELLULOSE hollow sphere, MCM-41, mesoporous material, benzene hydroxylation, hydrogel, methylcellulose
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