Selective catalysts can be considered as nano-machines designed to perform the synthesis of molecules with high reaction activity and high selectivity. These properties arise from a precise control of the structure of the active sites, of the three-dimensional environment and of their relationship. In both homogeneous and heterogeneous catalysts the active site three-dimensional environment ensemble is always a complex structure resembling the tuneable structure of enzymes, which are the most efficient catalysts optimized by nature over billions of years. To illustrate this concept the structure of a few homogeneous and heterogeneous catalysts for alkenes hydrogenation and for olefin polymerization are chosen and discussed as examples.

Selective catalysis and nanoscience: An inseperable pair

ZECCHINA, Adriano;GROPPO, Elena Clara;BORDIGA, Silvia
2007-01-01

Abstract

Selective catalysts can be considered as nano-machines designed to perform the synthesis of molecules with high reaction activity and high selectivity. These properties arise from a precise control of the structure of the active sites, of the three-dimensional environment and of their relationship. In both homogeneous and heterogeneous catalysts the active site three-dimensional environment ensemble is always a complex structure resembling the tuneable structure of enzymes, which are the most efficient catalysts optimized by nature over billions of years. To illustrate this concept the structure of a few homogeneous and heterogeneous catalysts for alkenes hydrogenation and for olefin polymerization are chosen and discussed as examples.
2007
13
2440
2460
http://www3.interscience.wiley.com/journal/114116403/abstract?CRETRY=1&SRETRY=0
ASYMMETRIC CATALYSIS; HYDROGENATION; NANOTECHNOLOGY; POLYMERIZATION
A. ZECCHINA; E. GROPPO; S. BORDIGA
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/2318/40491
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