Issue 10, 2023

Tuning the nuclearity of [Mo2O2S2]2+-based assemblies by playing with the degree of flexibility of bis-thiosemicarbazone ligands

Abstract

[MoV2O2S2]2+-based thiosemicarbazone complexes appear as very promising molecules for biological applications due to the intrinsic properties of their components. This paper deals with the synthesis and characterization of six coordination complexes obtained by the reaction of [MoV2O2S2]2+ clusters with bis-thiosemicarbazone ligands that contain flexible or rigid spacers between the two thiosemicarbazone units. Interestingly, structural characterization by single-crystal X-ray diffraction, MALDI-TOF MS technique and NMR spectroscopy revealed that the nuclearity of the complex is controlled by the nature of the spacer between the thiosemicarbazone units. Binuclear complexes, namely [MoV2O2S2(L1–3)], are isolated with flexible spacers while tetranuclear complexes [(MoV2O2S2)2(L4–6)2] are formed when the bis-thiosemicarbazone ligands are built on rigid spacers.

Graphical abstract: Tuning the nuclearity of [Mo2O2S2]2+-based assemblies by playing with the degree of flexibility of bis-thiosemicarbazone ligands

Supplementary files

Article information

Article type
Paper
Submitted
22 Nov 2022
Accepted
06 Feb 2023
First published
07 Feb 2023

Dalton Trans., 2023,52, 3059-3071

Tuning the nuclearity of [Mo2O2S2]2+-based assemblies by playing with the degree of flexibility of bis-thiosemicarbazone ligands

D. Cebotari, S. Calancea, J. Marrot, R. Guillot, C. Falaise, V. Guérineau, D. Touboul, M. Haouas, A. Gulea and S. Floquet, Dalton Trans., 2023, 52, 3059 DOI: 10.1039/D2DT03760B

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