Coordination pyramid inversion, angular cluster core and homochiral single-stranded helix formation in polynuclear Mn(II) assemblies supported by bicompartmental salen type ligand based on o-xylylenediamine platform

Abstract

Despite the rich history, salen-type compartmental ligands still attract considerable attention due to the wide potential applications of their complexes. By varying the flexibility of the spacer group, connecting two NO-chelating salicylideneamine moieties, and adjusting the type of anchored additional binding sites or co-ligands used, one can achieve the formation of 3d-metal clusters with the desired nuclearity In this work we report on the synthesis of two new binuclear {Mn II 2 } (1-Mn 2 Cl 3 and 1-Mn 2 Cl 2 ) and one angular (pseudo-linear) trinuclear {Mn II 3 } (1 2 -Mn 3 Cl 2 ) clusters, supported exclusively by o-xylylenediamine Schiff base derivative, bearing o-methoxy substituted salicylideneamine units and acting as bicompartmental ligand. The structure of all prepared compounds was established by SCXRD, revealing the role of o-xylylenediamine platform on the diversity of coordination motifs, displayed by studied coordination compounds. For the first time, in the case of {MnII2} clusters, displaying similar coordination motif, it was established that Mn atom, accommodated within the N2O2 coordination pocket, can adopt two different orientations of the MnN2O2Cl coordination pyramid relative to o-xylylene spacer group. Additionally, the H-bonding, electrostatic and CH/π interactions between anionic 1-Mn 2 Cl 3 cluster and NHEt 3 cation species produces the formation of helices, stacked in homochiral crystal wit polar chiral P4 1 space group, which is firstly reported for complexes, based on salen-type ligands. Finally, the formation of trinuclear complex 1 2 -Mn 3 Cl 2 , exhibiting the unusual angular motif of the cluster core, stabilized by ligand structure and intramolecular CH/π-bonding, is observed.

Supplementary files

Article information

Article type
Paper
Submitted
02 Mar 2026
Accepted
13 Apr 2026
First published
14 Apr 2026

CrystEngComm, 2026, Accepted Manuscript

Coordination pyramid inversion, angular cluster core and homochiral single-stranded helix formation in polynuclear Mn(II) assemblies supported by bicompartmental salen type ligand based on o-xylylenediamine platform

I. D. Shutilov, P. A. Volodin, L. V. Frantsuzova, A. T. Gubaidullin, A. Ovsyannikov, S. E. Solovieva and I. S. Antipin, CrystEngComm, 2026, Accepted Manuscript , DOI: 10.1039/D6CE00172F

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