Issue 38, 2023

Energetics of key Au(iii)-substrate adducts relevant to catalytic hydroarylation of alkynes

Abstract

(P,C)-cyclometalated Au(III) complexes have shown remarkable ability to catalyze the intermolecular hydroarylation of alkynes. Evidence of an outer-sphere mechanism has been provided in a previous study and is confirmed here by analysing the experimental data and DFT calculations. In this work, we propose evaluation of critical energies of dissociation of Au(III) complexes with different substrates via energy-resolved mass spectrometry (ERMS) experiments and kinetic modelling. The kinetic model is based on a multi-collisional approach. On the one hand, the classification confirms the mechanism previously proposed; on the other hand, it supports the collisional model and its application to particularly fragile adducts.

Graphical abstract: Energetics of key Au(iii)-substrate adducts relevant to catalytic hydroarylation of alkynes

Supplementary files

Article information

Article type
Paper
Submitted
26 Jul 2023
Accepted
30 Aug 2023
First published
31 Aug 2023
This article is Open Access
Creative Commons BY-NC license

Dalton Trans., 2023,52, 13528-13536

Energetics of key Au(III)-substrate adducts relevant to catalytic hydroarylation of alkynes

M. Regnacq, D. Lesage, M. S. M. Holmsen, K. Miqueu, D. Bourissou and Y. Gimbert, Dalton Trans., 2023, 52, 13528 DOI: 10.1039/D3DT02393A

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