Issue 20, 2026, Issue in Progress

Dipyridinophane ligands – synthesis and coordination study

Abstract

Twelve-membered dipyridinophane and its derivatives bearing two acetate or methylphosphonate pendant arms were synthesised, and their coordination properties were studied. Protonation constants of the ligands and stability constants of their complexes with NiII, CuII and ZnII ions were determined through a combination of potentiometry and spectral measurements. The ligands demonstrate significantly lower basicity than other tetraazamacrocycles (cyclen, pyclen) due to the presence of two pyridine units. This low macrocycle basicity results in high conditional stabilities of the complexes in acidic solutions. The solid-state structures of the complexes reveal that divalent first-row transition metal ions form a distorted octahedron with weakly coordinated pendant arms and bent coordination of the pyridine rings, as these metal ions are too large for the ligand cavity. Conversely, the ligand cavity is very suitable for smaller trivalent metal ions, and the complexes adopt an octahedral (CoIII) or pentagonal bipyramidal (FeIII and GaIII) arrangements.

Graphical abstract: Dipyridinophane ligands – synthesis and coordination study

Supplementary files

Article information

Article type
Paper
Submitted
19 Jan 2026
Accepted
13 Mar 2026
First published
07 Apr 2026
This article is Open Access
Creative Commons BY license

RSC Adv., 2026,16, 18220-18231

Dipyridinophane ligands – synthesis and coordination study

L. Kuncová, J. Lazarová, J. Kotek, V. Kubíček and P. Hermann, RSC Adv., 2026, 16, 18220 DOI: 10.1039/D6RA00469E

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