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  4. Evidence for Metal-Surface Interactions and Their Role in Stabilizing Well-Defined Immobilized Ru-NHC Alkene Metathesis Catalysts
 
research article

Evidence for Metal-Surface Interactions and Their Role in Stabilizing Well-Defined Immobilized Ru-NHC Alkene Metathesis Catalysts

Samantaray, Manoja K.
•
Alauzun, Johan
•
Gajan, David
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2013
Journal of the American Chemical Society

Secondary interactions are demonstrated to direct the stability of well-defined Ru-NHC-based heterogeneous alkene metathesis catalysts. By providing key stabilization of the active sites, higher catalytic performance is achieved. Specifically, they can be described as interactions between the metal center (active site) and the surface functionality of the support, and they have been detected by surface-enhanced H-1-Si-29 NMR spectroscopy of the ligand and P-31 solid-state NMR of the catalyst precursor. They are present only when the metal center is attached to the surface via a flexible linker (a propyl group), which allows the active site to either react with the substrate or relax, reversibly, to the surface, thus providing stability. In contrast, the use of a rigid linker (here mesitylphenyl) leads to a well-defined active site far away from the surface, stabilized only by a phosphine ligand which under reaction conditions leaves probably irreversibly, leading to faster decomposition and deactivation of the catalysts.

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Type
research article
DOI
10.1021/ja311722k
Web of Science ID

WOS:000315618900053

Author(s)
Samantaray, Manoja K.
Alauzun, Johan
Gajan, David
Kavitake, Santosh
Mehdi, Ahmad
Veyre, Laurent
Lelli, Moreno
Lesage, Anne
Emsley, Lyndon  
Coperet, Christophe
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Date Issued

2013

Publisher

AMER CHEMICAL SOC

Published in
Journal of the American Chemical Society
Volume

135

Issue

8

Start page

3193

End page

3199

Editorial or Peer reviewed

REVIEWED

Written at

OTHER

EPFL units
LRM  
Available on Infoscience
January 8, 2015
Use this identifier to reference this record
https://infoscience.epfl.ch/handle/20.500.14299/109976
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