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Natural Abundance 15N NMR by Dynamic Nuclear Polarization: Fast Analysis of Binding Sites of a Novel Amine‐Carboxyl‐Linked Immobilized Dirhodium Catalyst
Authors:Torsten Gutmann  Jiquan Liu  Niels Rothermel  Yeping Xu  Eva Jaumann  Mayke Werner  Hergen Breitzke  Snorri T. Sigurdsson  Gerd Buntkowsky
Affiliation:1. Institute of Physical Chemistry, Technical University Darmstadt, Alarich‐Weiss‐Stra?e 8, 64287 Darmstadt (Germany);2. University of Iceland, Department of Chemistry, Science Institute, Dunhagi 3, IS‐107 Reykjavík (Iceland)
Abstract:A novel heterogeneous dirhodium catalyst has been synthesized. This stable catalyst is constructed from dirhodium acetate dimer (Rh2(OAc)4) units, which are covalently linked to amine‐ and carboxyl‐bifunctionalized mesoporous silica (SBA‐15?NH2?COOH). It shows good efficiency in catalyzing the cyclopropanation reaction of styrene and ethyl diazoacetate (EDA) forming cis‐ and trans‐1‐ethoxycarbonyl‐2‐phenylcyclopropane. To characterize the structure of this catalyst and to confirm the successful immobilization, heteronuclear solid‐state NMR experiments have been performed. The high application potential of dynamic nuclear polarization (DNP) NMR for the analysis of binding sites in this novel catalyst is demonstrated. Signal‐enhanced 13C CP MAS and 15N CP MAS techniques have been employed to detect different carboxyl and amine binding sites in natural abundance on a fast time scale. The interpretation of the experimental chemical shift values for different binding sites has been corroborated by quantum chemical calculations on dirhodium model complexes.
Keywords:dynamic nuclear polarization  heterogeneous catalysis  hyperpolarization  immobilized catalyst  NMR spectroscopy
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