Issue 10, 2024

Acridine-based copper(i) PNP pincer complexes: catalysts for alkyne hydroboration and borylation of aryl halides

Abstract

PNP pincers represent some of the most well-studied ligand systems in coordination chemistry owing to their high thermal and chemical stability, and the predictable metal coordination geometries of associated metal complexes. Examples of first-row transition metal complexes bearing acridine-based PNP pincer ligands are extremely rare. This study reports the preparation and structural authentication of acridine-based copper(I) PNP complexes, which reveal the profound effects that the steric bulk of methylene-tethered P-substituents has on metal centre coordination number and geometry. The capacity of these systems to mediate copper-catalysed alkyne hydroboration and the borylation of aryl halides is also investigated.

Graphical abstract: Acridine-based copper(i) PNP pincer complexes: catalysts for alkyne hydroboration and borylation of aryl halides

Associated articles

Supplementary files

Article information

Article type
Paper
Submitted
20 Dec. 2023
Accepted
05 Febr. 2024
First published
07 Febr. 2024

Dalton Trans., 2024,53, 4471-4478

Acridine-based copper(I) PNP pincer complexes: catalysts for alkyne hydroboration and borylation of aryl halides

A. Olding, Nigel. T. Lucas, C. C. Ho and A. C. Bissember, Dalton Trans., 2024, 53, 4471 DOI: 10.1039/D3DT04269C

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