中国科学院机构知识库网格
Chinese Academy of Sciences Institutional Repositories Grid
Exploring Meso-/Microporous Composite Molecular Sieves with Core-Shell Structures

文献类型:期刊论文

作者X. F. F. Qian ; B. Li ; Y. Y. Y. Hu ; G. X. X. Niu ; Dyhh Zhang ; R. C. C. Che ; Y. Tang ; D. S. S. Su ; A. M. Asiri ; D. Y. Y. Zhao
刊名Chemistry-a European Journal
出版日期2012
卷号18期号:3页码:931-939
关键词composite materials core-shell structures mesoporous materials molecular sieves zeolites amorphous silica-alumina catalytic cracking coke formation zeolite mcm-41 nanoparticles fabrication oil microspheres overgrowth
ISSN号0947-6539
中文摘要A series of core-shell-structured composite molecular sieves comprising zeolite single crystals (i.e., ZSM-5) as a core and ordered mesoporous silica as a shell were synthesized by means of a surfactant-directed sol-gel process in basic medium by using cetyltrimethylammonium bromide (CTAB) as a template and tetraethylorthosilicate (TEOS) as silica precursor. Through this coating method, uniform mesoporous silica shells closely grow around the anisotropic zeolite single crystals, the shell thickness of which can easily be tuned in the range of 15-100 nm by changing the ratio of TEOS/zeolite. The obtained composite molecular sieves have compact meso-/micropore junctions that form a hierarchical pore structure from ordered mesopore channels (2.4-3.0 nm in diameter) to zeolite micropores (approximate to 0.51 nm). The short-time kinetic diffusion efficiency of benzene molecules within pristine ZSM-5 (approximate to 7.88 x 10(-19) m(2) s(-1)) is almost retainable after covering with 75 nm-thick mesoporous silica shells (approximate to 7.25 x 10(-19) m(2)s(-1)), which reflects the greatly opened junctions between closely connected mesopores (shell) and micropores (core). The core-shell composite shows greatly enhanced adsorption capacity (approximate to 1.35 mmolg(-1)) for large molecules such as 1,3,5-triisopropylbenzene relative to that of pristine ZSM-5 (approximate to 0.4 mmolg(-1)) owing to the mesoporous silica shells. When Al species are introduced during the coating process, the core-shell composite molecular sieves demonstrate a graded acidity distribution from weak acidity of mesopores (predominant Lewis acid sites) to accessible strong acidity of zeolite cores (Lewis and Bronsted acid sites). The probe catalytic cracking reaction of n-dodecane shows the superiority of the unique core-shell structure over pristine ZSM-5. Insight into the core-shell composite structure with hierarchical pore and graded acidity distribution show great potential for petroleum catalytic processes.
原文出处://WOS:000298919400025
公开日期2013-02-05
源URL[http://ir.imr.ac.cn/handle/321006/60191]  
专题金属研究所_中国科学院金属研究所
推荐引用方式
GB/T 7714
X. F. F. Qian,B. Li,Y. Y. Y. Hu,et al. Exploring Meso-/Microporous Composite Molecular Sieves with Core-Shell Structures[J]. Chemistry-a European Journal,2012,18(3):931-939.
APA X. F. F. Qian.,B. Li.,Y. Y. Y. Hu.,G. X. X. Niu.,Dyhh Zhang.,...&D. Y. Y. Zhao.(2012).Exploring Meso-/Microporous Composite Molecular Sieves with Core-Shell Structures.Chemistry-a European Journal,18(3),931-939.
MLA X. F. F. Qian,et al."Exploring Meso-/Microporous Composite Molecular Sieves with Core-Shell Structures".Chemistry-a European Journal 18.3(2012):931-939.

入库方式: OAI收割

来源:金属研究所

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