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An efficient protocol for the evaluation of catalysts for the asymmetric Morita-Baylis-Hillman (MBH) reaction was developed. By mass spectrometric back-reaction screening of quasi-enantiomeric MBH products, an efficient bifunctional phosphine catalyst was identified that outperforms literature-known catalysts in the MBH reaction of methyl acrylate with aldehydes. The close match between the selectivities measured for the forward and back reaction and kinetic measurements provided strong evidence that the aldol step and not the subsequent proton transfer is rate- and enantioselectivity-determining.

作者:Patrick G, Isenegger;Florian, B?chle;Andreas, Pfaltz

来源:Chemistry (Weinheim an der Bergstrasse, Germany) 2016 年 22卷 49期

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作者:
Patrick G, Isenegger;Florian, B?chle;Andreas, Pfaltz
来源:
Chemistry (Weinheim an der Bergstrasse, Germany) 2016 年 22卷 49期
标签:
Morita-Baylis-Hillman asymmetric catalysis high-throughput screening mass spectrometry organocatalysis
An efficient protocol for the evaluation of catalysts for the asymmetric Morita-Baylis-Hillman (MBH) reaction was developed. By mass spectrometric back-reaction screening of quasi-enantiomeric MBH products, an efficient bifunctional phosphine catalyst was identified that outperforms literature-known catalysts in the MBH reaction of methyl acrylate with aldehydes. The close match between the selectivities measured for the forward and back reaction and kinetic measurements provided strong evidence that the aldol step and not the subsequent proton transfer is rate- and enantioselectivity-determining.