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量子力学研究催化剂氟化对分子间不对称 Stetter 反应的影响。

Quantum mechanical investigation of the effect of catalyst fluorination in the intermolecular asymmetric Stetter reaction.

机构信息

University of California, Los Angeles, Department of Chemistry and Biochemistry, Los Angeles, California 90095-1569, USA.

出版信息

J Am Chem Soc. 2011 Jul 27;133(29):11249-54. doi: 10.1021/ja202444g. Epub 2011 Jul 6.

Abstract

The asymmetric intermolecular Stetter reaction was investigated using the B3LYP and M06-2X functionals. Fluorination of a triazolium bicyclic catalyst had been found to significantly influence reaction yields and enantiomeric ratios. Computations indicate that the improved reactivity of the fluorinated catalyst is due to better electrostatic interactions between the nitroalkene and catalyst. Computational investigations of preferred conformations of the ground state catalyst and acyl anion equivalent, and the transition structures leading to both enantiomers of the products, are reported.

摘要

采用 B3LYP 和 M06-2X 泛函研究了不对称分子间 Stetter 反应。已经发现三唑鎓双环催化剂的氟化显著影响反应产率和对映体比率。计算表明,氟化催化剂的反应活性提高是由于硝基烯烃和催化剂之间更好的静电相互作用。报道了对 ground state 催化剂和酰基阴离子等价物的优先构象以及导致产物两种对映体的过渡态的计算研究。

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