Issue 44, 2020

Dynamics of the efficient cyclometalation of the undercoordinated organoplatinum complex [Pt(COD)(neoPh)]+ (neoPh = 2-methyl-2-phenylpropyl)

Abstract

Reaction of the organoplatinum complex [Pt(COD)(neoPh)Cl] (neoPh = (2-methyl-2-phenylpropyl)) with Ag(PF6) leads to the undercoordinated cationic complex [Pt(COD)(neoPh)]+ which rapidly and quantitatively rearranges to the complex [Pt(COD)(κ2-neoPh)] through intramolecular cyclometalation. Detailed NMR spectroscopy and single crystal XRD reveal a doubly metalated neoPh ligand. In line with experimental observations, ab initio molecular dynamics simulations confirm that the cyclometalation reaction is exothermic and has a relatively low free energy barrier. In addition, the simulations provide detailed insight into the reaction mechanism, showing that an intermediate species exists in which the newly formed Pt–C bond coexists with a covalent Pt–H bond involving the leaving proton. The latter is found to eventually transfer onto an acetone solvent molecule.

Graphical abstract: Dynamics of the efficient cyclometalation of the undercoordinated organoplatinum complex [Pt(COD)(neoPh)]+ (neoPh = 2-methyl-2-phenylpropyl)

Supplementary files

Article information

Article type
Paper
Submitted
29 Sep 2020
Accepted
16 Oct 2020
First published
26 Oct 2020

New J. Chem., 2020,44, 19238-19249

Dynamics of the efficient cyclometalation of the undercoordinated organoplatinum complex [Pt(COD)(neoPh)]+ (neoPh = 2-methyl-2-phenylpropyl)

M. Neugebauer, S. Schmitz, D. Brünink, N. L. Doltsinis and A. Klein, New J. Chem., 2020, 44, 19238 DOI: 10.1039/D0NJ04811A

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