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[Studies in Surface Science and Catalysis] Structure-Activity and Selectivity Relationships in Heterogeneous Catalysis, Proceedings of the ACS Symposium on Structure-Activity Relationships in Heterogeneous Catalysis Volume 67 || Surface Chemistry Modelling of Ziegler-Natta Catalysis

โœ Scribed by Watson, P.R.


Book ID
120617366
Publisher
Elsevier
Year
1991
Tongue
English
Weight
710 KB
Edition
2
Category
Article
ISBN
0444889426
ISSN
0167-2991

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โœฆ Synopsis


Structure plays an important role in heterogeneous catalysis. It provides a framework for the arrangement and stragetic placement of key catalytic elements, hosting them in a prescribed manner so that their respective electronic properties can exhibit their desired catalytic functions and mutual interactions. Under reaction conditions these framework structures and their catalytic guests undergo dynamic processes becoming active participants of the overall catalytic process. They are not mere static geometric forms. The dynamics of catalytic structures are particularly vivid in selective oxidation catalysis where the lattice of a given catalytic solid partakes as a whole, not only its surface, in the redox processes of the reaction. The catalyst becomes actually a participating reagent. By proper choice of key catalytic elements and their host structures, preferred catalytic pathways can be selected over less desired ones. However, not only in selective redox catalysis does structure play an important role, its importance is also well documented, among others, in shape selective zeolite catalysis, enantioselective hydrogenation and hydrodesulfurization.

The contributions presented in this book address the dynamic character of the solid state under catalytic reaction conditions. By relating structure to activity and selectivity in heterogeneous catalysis our understanding of such correlations has been significantly enhanced through the use of sophisticated spectroscopic means, surface science and modeling.


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