Concerted C–N/C–H Bond Formation in Highly Enantioselective Yttrium(III)-Catalyzed Hydroamination

Thumbnail Image
Supplemental Files
Date
2011-10-12
Authors
Manna, Kuntal
Kruse, Marissa
Major Professor
Advisor
Committee Member
Journal Title
Journal ISSN
Volume Title
Publisher
Abstract

A highly active oxazolinylborato yttrium hydroamination catalyst provides 2-methyl-pyrrolidines with excellent optical purities. The proposed mechanism, in which a yttrium(amidoalkene)amine complex reacts by concerted C–N and C–H bond formation, is supported by the rate law for conversion, substrate saturation under initial rates conditions, kinetic isotope effects, and isotopic perturbation of enantioselectivity. These features are conserved between oxazolinylborato Mg-, Y-, and Zr-mediated aminoalkene cyclizations, suggesting related transition states for all three systems. However, inversion of the products’ absolute configuration between yttrium and zirconium catalysts coordinated by the same 4S-oxazolinylborate ligands highlight dissimilar mechanisms of stereoinduction.

Series Number
Journal Issue
Is Version Of
Versions
Series
Academic or Administrative Unit
Type
article
Comments

Reprinted (adapted) with permission from ACS Catalysis 1 (2011): 1637, doi: 10.1021/cs200511z. Copyright 2011 American Chemical Society.

Rights Statement
Copyright
Sat Jan 01 00:00:00 UTC 2011
Funding
Subject Categories
DOI
Supplemental Resources
Collections