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Photochemistry of Dibenzyl Ketone Adsorbed on Size/Shape Selective Faujasite Zeolites. Steric Effects on Product Distributions

机译:二苯甲酮吸附在尺寸/形状选择性八面沸石上的光化学。产品分布的空间效应

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Zeolites are robust, crystalline, porous aluminosilicates possessing an enormous internal surface area that is capable of adsorbing large quantities of guest molecules, the size and shape of whose structures allow them to pass from the external to the internal zeolitic surface and to diffuse on the internal surface. The framework composition, the presence of cations associated with the framework, and the topology of the void space internal to the zeolite all contrive to imbue these materials with special properties that contribute to their widespread use as catalysts, ion exchange materials and molecular sieves. Photochemical probes have been developed to explore the structure of zeolites near the sites of adsorption and to examine the dynamics of reactions of molecules adsorbed on the internal zeolite surface. In this chapter, we review the structure of zeolites in general, and then survey the structure of an important class of zeolites, the faujasites. We then show how a photochemical probe, the photochemistry of dibenzyl ketone, can yield information on how intracrystalline dynamics can be influenced by cation type, cation number density and coadsorbed guests and, in turn, how intracrystalline dynamics can determine the products of photoreactions. Keywords: Reprints; Zeolites; Dibenzyl ketone; Catalysts; Faujasites; Molecular sieves; Diffusion; Photochemical probes; Supercages; Primary radical pairs; Cations. (KT)

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