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Catalysis by Unique Metal Ion Structures in Solid Matrices Book

Catalysis by Unique Metal Ion Structures in Solid Matrices
Catalysis by Unique Metal Ion Structures in Solid Matrices, Atomically dispersed metal cations and small polyatomic cationic structures co-ordinated to the surface of porous matrices exhibit different properties from the same cationic species contained in a bulk oxide or supported on amorphous carriers. This subje, Catalysis by Unique Metal Ion Structures in Solid Matrices has a rating of 3 stars
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Catalysis by Unique Metal Ion Structures in Solid Matrices, Atomically dispersed metal cations and small polyatomic cationic structures co-ordinated to the surface of porous matrices exhibit different properties from the same cationic species contained in a bulk oxide or supported on amorphous carriers. This subje, Catalysis by Unique Metal Ion Structures in Solid Matrices
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  • Catalysis by Unique Metal Ion Structures in Solid Matrices
  • Written by author Gabriele Centi
  • Published by Springer-Verlag New York, LLC, September 2007
  • Atomically dispersed metal cations and small polyatomic cationic structures co-ordinated to the surface of porous matrices exhibit different properties from the same cationic species contained in a bulk oxide or supported on amorphous carriers. This subje
  • Atomically dispersed metal cations and small polyatomic cationic structures co-ordinated to the surface of porous matrices exhibit different properties from the same cationic species contained in a bulk oxide or supported on amorphous carriers. This subje
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Preface
Towards a Better Understanding and Terminology of the Oxide / Transition Metal Complex Interactions1
Ion Exchange of Non-Framework Cations in Zeolites for Catalysis21
Single Metal Ions in Host Zeolite Matrices. Structure-Activity-Selectivity-Relationships31
Siting and Stability of Metal Cations in Zeolites55
Mono- and Multinuclear Oxo-Cations in Zeolite Cavities75
Exafs Study of Fe/ZSM-5 Prepared by Chemical Vapour Deposition and Co/FER, MOR, MFI Prepared by Ion Exchange85
Advances in the Determination of the Architecture of Active Sites in Solid Catalysts95
Electronic Structure of Transition-Metal Ion Containing Zeolites115
Migration of Ti and Fe from Framework to Extraframework Positions in Zeolitic Materials: Spectroscopic Studies135
Identification of Active Oxygen Species Over Fe Complexes in Zeolites149
Catalysis Using Guest Single and Mixed Oxides in Host Zeolite Matrices165
Reactivity Theory of Zinc Cation Species in Zeolites187
Local Site Deformations in Zeolites by the Coordination of (Cu)II205
Ab Initio Simulation of Cu-Species in Zeolites: Siting, Coordination, UV-VIS Spectra and Reactivity221
Asymmetric Oxidation of Sulphide on Metal Ion Planted in Mesoporous MCM-41235
Photocatalysis of Cations Incorporated within Zeolites - The Local Structures and Excited States of the Cu (I) and Ag (I) Species and their Photocatalytic Reactivities249
Direct Addition of Amine N-H To CC Triple Bonds - New Hydroamination Catalysts based on late Transition Metals263
Immobilisation of Chiral Homogeneous Catalysts and their Use for Oxidation and Hydrogenation Reactions279
Catalysis by Novel Carbon-Based Materials295
Panel Discussions307
Conclusions, Outlooks and Recommendations311
List of Participants317
Subject Index327
Author Index331


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Catalysis by Unique Metal Ion Structures in Solid Matrices, Atomically dispersed metal cations and small polyatomic cationic structures co-ordinated to the surface of porous matrices exhibit different properties from the same cationic species contained in a bulk oxide or supported on amorphous carriers. This subje, Catalysis by Unique Metal Ion Structures in Solid Matrices

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Catalysis by Unique Metal Ion Structures in Solid Matrices, Atomically dispersed metal cations and small polyatomic cationic structures co-ordinated to the surface of porous matrices exhibit different properties from the same cationic species contained in a bulk oxide or supported on amorphous carriers. This subje, Catalysis by Unique Metal Ion Structures in Solid Matrices

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Catalysis by Unique Metal Ion Structures in Solid Matrices, Atomically dispersed metal cations and small polyatomic cationic structures co-ordinated to the surface of porous matrices exhibit different properties from the same cationic species contained in a bulk oxide or supported on amorphous carriers. This subje, Catalysis by Unique Metal Ion Structures in Solid Matrices

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