4.4 Article

Computational considerations on the mechanism and stereoselectivity in cyclopropanation reactions via iron-carbenes

期刊

TETRAHEDRON LETTERS
卷 72, 期 -, 页码 -

出版社

PERGAMON-ELSEVIER SCIENCE LTD
DOI: 10.1016/j.tetlet.2021.153023

关键词

Cyclopropanation; Reaction mechanism; Iron-carbenes; Stereoselectivity; DFT calculations

资金

  1. brazilian agency FAPEPI (Research Support Foundation of Piaui State)
  2. FAPEPI

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Iron-carbenes with heme or piano-stool groups as ancillary ligands are important catalysts for cyclopropanation through carbene transfer to olefins. The reaction mechanism operates through a concerted or stepwise pathway. The diastereo selectivity is mainly related to non-covalent interactions in transition structures of the main barriers in the mechanisms.
Iron-carbenes bearing heme or piano-stool groups as ancillary ligands are important catalyst for cyclopropanation via carbene transfer to olefins. The reaction mechanism operates through a concerted or a stepwise pathway. In most situations, the main product is the trans-cyclopropane, however, the cis-cyclopropane appears as the main product in some situations. We have performed DFT calculations to model the reaction mechanisms considering different spin states and different substituents for the two types of iron-carbenes above mentioned. Our results suggest that olefin cyclopropanation occurs mainly by the stepwise pathway, throughout a multi-state reactivity, or by a concerted pathway, depending on the catalyst. The origin of the diastereo selectivity is diverse, however, mainly related to the non-covalent interactions present in the transition structures of the main barrier in the mechanisms. (C) 2021 Elsevier Ltd. All rights reserved.

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