A new templated ordered structure with combined micro- and mesopores and internal silica nanocapsules

被引:284
作者
Van Der Voort, P
Ravikovitch, PI
De Jong, KP
Benjelloun, M
Van Bavel, E
Janssen, AH
Neimark, AV
Weckhuysen, BM
Vansant, EF
机构
[1] Univ Instelling Antwerp, Dept Chem, B-2610 Wilrijk, Belgium
[2] TRI Princeton, Ctr Modeling & Characterizat Nanoporous Mat, Princeton, NJ 08542 USA
[3] Univ Utrecht, Debye Inst, Dept Inorgan Chem & Catalysis, NL-3508 TB Utrecht, Netherlands
关键词
D O I
10.1021/jp025642i
中图分类号
O64 [物理化学(理论化学)、化学物理学];
学科分类号
070304 ; 081704 ;
摘要
The increasing awareness of the need to create green and sustainable production processes in all fields of chemistry has stimulated materials scientists to search for innovative catalysts supports. These new catalytic supports should allow the heterogenization of most catalytic processes, increasing the efficiency and selectivity of the synthesis and reducing waste and by products. Following the development of several micellar templated structures. such as M41S(1). FSM-16.(2.3) HMS.(4.5) MSU-x.(6) and SBA-x.(7.8) it is a crucial next step to create Support materials. consistirig of a composite matrix with combined micro- and mesoporosities and a sufficient stability to withstand most industrial treatments. We describe in this paper the very first development of a hexagonal material with large pore diameters and thick walls (4 nm). containing internal microporous silica nanocapsules. These plugged hexagonal templated silicas (PHTS) have two types of micropores (originating from the walls and the nanocapsules respectively) and a tunable amount of both open and encapsulated mesopores. The micropore volumes have a high value (up to 0.3 cm(3)/g) and the total pore volume exceeds 1 cm(3)/g. The obtained materials are much more stable than the conventional micellar templated structures known so far, and can easily withstand severe hydrothermal treatments and mechanical pressures.
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页码:5873 / 5877
页数:5
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