New bis-pyrazole-bis-acetate based coordination complexes: influence of counter-anions and metal ions on the supramolecular structures

Oulmidi, A., Radi, S., Miras, H. N. , Adarsh, N. N. and Garcia, Y. (2021) New bis-pyrazole-bis-acetate based coordination complexes: influence of counter-anions and metal ions on the supramolecular structures. Sustainability, 13(1), 288. (doi: 10.3390/su13010288)

[img] Text
233794.pdf - Published Version
Available under License Creative Commons Attribution.

4MB

Abstract

A new flexible bis-pyrazol-bis-acetate ligand, diethyl 2,2’-(pyridine-2,6-diylbis (5-methyl-1H-pyrazole-3,1-diyl))diacetate (L), has been synthesised, and three coordination complexes, namely, [Zn(L)2](BF4)2 (1), [MnLCl2] (2) and [CdLCl2] (3) have been obtained. All ligands and complexes were characterised by IR, mass spectroscopy, thermogravimetric analysis and single-crystal X-ray diffraction. Single crystal X-ray diffraction experiment revealed that the primary supramolecular building block of 1 is a hexagonal chair shaped 0D hydrogen bonded synthon (stabilised by C–H∙∙∙O hydrogen bonding and C=O∙∙∙π interactions), which further built into a 2D corrugated sheet-like architecture having a 3-c net honeycomb topology, and finally extended to a 3D hydrogen bonded network structure having a five nodal 1,3,3,3,7-c net, through C–H∙∙∙F interactions. On the other hand, the two crystallographically independent molecules of 2 exhibited two distinct supramolecular structures such as 2D hydrogen bonded sheet structure and 1D zigzag hydrogen bonded chain, sustained by C–H∙O and C–H∙∙∙Cl interactions, which are further self-assembled into a 3,4-c network structure, and 3 showed a 2D hydrogen bonded sheet structure. The supramolecular structural diversity in these complexes is due to the different conformations adopted by the ligands, which are mainly induced by different metal ions with coordination environments controlled by different anions. Hirshfeld surface analysis was explored for the qualitative and quantitative analysis of the supramolecular interactions.

Item Type:Articles
Status:Published
Refereed:Yes
Glasgow Author(s) Enlighten ID:Moiras, Professor Haralampos
Authors: Oulmidi, A., Radi, S., Miras, H. N., Adarsh, N. N., and Garcia, Y.
College/School:College of Science and Engineering > School of Chemistry
Journal Name:Sustainability
Publisher:MDPI
ISSN:2071-1050
ISSN (Online):2071-1050
Published Online:30 December 2020
Copyright Holders:Copyright © 2020 The Authors
First Published:First published in Sustainability 13(1):288
Publisher Policy:Reproduced under a Creative Commons licence

University Staff: Request a correction | Enlighten Editors: Update this record