Mechanism of Iron‐Catalyzed C—H Alkenylation of Pivalophenone Derivatives With Unsymmetric Internal Alkynes

Author:

Santoro Stefano1ORCID

Affiliation:

1. Department of Chemistry, Biology and Biotechnology University of Perugia Perugia Italy

Abstract

ABSTRACTThe mechanism of an iron‐catalyzed C—H alkenylation of pivalophenone derivatives with unsymmetric internal alkynes is investigated in details by means of density functional theory calculations. It is shown that the reaction begins with two consecutive ligand exchanges, followed by a fast and reversible oxidative addition C—H activation step. Next, an alkyne insertion into the Fe—H bond, two isomerization steps, and a reductive elimination afford the final product. The reductive elimination is the turnover‐limiting step of the process, and also determines the regiochemical outcome of the reaction. The origin of the regioselectivity is proposed to be the steric repulsion between the bulky trimethylsilyl group and the aromatic fragment in the reductive elimination step leading to the not observed regioisomer.

Funder

Università degli Studi di Perugia

Ministry for Universities and Research

European Commission

Publisher

Wiley

Reference37 articles.

1. Recent Applications of C—H Functionalization in Complex Natural Product Synthesis;Abrams D. J.;Chemical Society Reviews,2018

2. C—H Functionalization Logic in Total Synthesis;Gutekunst W. R.;Chemical Society Reviews,2011

3. Synthesis of Natural Products by C—H Functionalization of Heterocycless;Zhang Y.;Chemistry ‐ A European Journal,2022

4. Evolution of C—H Bond Functionalization From Methane to Methodology;Hartwig J. F.;Journal of the American Chemical Society,2016

5. C—H Activation: Toward Sustainability and Applications;Dalton T.;ACS Central Science,2021

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