Issue 4, 2025

Pd-catalysed C–H bond functionalisation route to 1,2-dihydroferroceno[c]isoquinoline and its annellated derivatives and the reactivity of these compounds

Abstract

C–H bond functionalisation has developed into a powerful synthetic methodology that is applicable to a wide array of substrates, including organometallic compounds. In this study, racemic, planar-chiral 1,2-dihydroferroceno[c]isoquinoline and analogous helical compounds with one or two additional ortho-fused benzene rings were synthesised by palladium-catalysed C–H bond activation/cyclisation of N-[(bromoaryl)methyl]-N-(methylsulfonyl)aminoferrocenes. These starting materials are readily accessible from FcNHSO2Me (Fc = ferrocenyl) and appropriate vicinal bromo-(bromomethyl)arenes. The racemic products were successfully enantioseparated using chiral chromatography and the representative compound, 1,2-dihydro-2-(methylsulfonyl)ferroceno[c]isoquinoline, was converted to the unstable ferroceno[c]isoquinoline and further used to prepare a heterobimetallic, Fe/Ru bis-metallocene complex via a reaction with [(η5-C5Me5)Ru(MeCN)3][PF6]. All compounds were characterised by spectroscopic methods (NMR, FTIR, and UV-vis) and mass spectrometry and, in most cases, the structures were determined by single-crystal X-ray diffraction analysis. In addition, the representative compounds were examined by cyclic voltammetry, and the results were rationalised with the aid of DFT calculations.

Graphical abstract: Pd-catalysed C–H bond functionalisation route to 1,2-dihydroferroceno[c]isoquinoline and its annellated derivatives and the reactivity of these compounds

Supplementary files

Article information

Article type
Paper
Submitted
01 Nov 2024
Accepted
28 Nov 2024
First published
03 Dec 2024
This article is Open Access
Creative Commons BY-NC license

Dalton Trans., 2025,54, 1495-1503

Pd-catalysed C–H bond functionalisation route to 1,2-dihydroferroceno[c]isoquinoline and its annellated derivatives and the reactivity of these compounds

V. Varmužová, I. Císařová, J. Schulz, K. Kalíková and P. Štěpnička, Dalton Trans., 2025, 54, 1495 DOI: 10.1039/D4DT03063J

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