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Solvent‐Catalyzed Ring–Chain–Ring Tautomerization in Axially Chiral Compounds
Authors:Asli Yildirim  Prof?Dr Fethiye Aylin Sungur Konuklar  Dr Saron Catak  Prof?Dr Veronique Van?Speybroeck  Prof?Dr Michel Waroquier  Prof?Dr Ilknur Dogan  Prof?Dr Viktorya Aviyente
Institution:1. Department of Chemistry, Bo?azi?i University, Bebek, Istanbul, 34342 (Turkey), Fax: (+90)?212‐287‐24‐67;2. Informatics Institute, Istanbul Technical University, Maslak, Istanbul, 34469 (Turkey);3. Center for Molecular Modeling, Ghent University, Technologie Park 903, 9052 Zwijnaarde (Belgium), Fax: (+32)?9‐264‐66‐97
Abstract:The mechanism of ring–chain–ring tautomerization and the prominent effect of the solvent environment have been computationally investigated in an effort to explain the enantiomeric interconversion observed in 2‐oxazolidinone derivatives, heterocyclic analogues of biphenyl atropisomers, which were isolated as single stable enantiomers and have the potential to be used as axially chiral catalysts. This study has shed light on the identity of the intermediate species involved in the ring–chain–ring tautomerization process as well as the catalytic effect of polar protic solvents. These mechanistic details will prove very useful in predicting and understanding ring–chain tautomeric equilibria in similar heterocyclic systems and will further enable experimentalists to devise appropriate experimental conditions in which axially chiral catalysts remain stable as single enantiomers.
Keywords:biaryls  chirality  density functional calculations  microsolvation  tautomerization
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