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Copper(II) coordination polymer based on L-arginine as a supramolecular hybrid inorganic-organic material - synthesis, structural, spectroscopic and magnetic properties

Authors :
Karol Musioł
Jan Janczak
Katarzyna Helios
Maciej Witwicki
Magdalena Fitta
Robert Pełka
Agnieszka Wojciechowska
Publication Year :
2022
Publisher :
Research Square Platform LLC, 2022.

Abstract

We report the synthesis and structural, spectroscopic and magnetic properties of new 1D coordination polymeric complex {[Cu(μ-l-Arg)2]SO4⋅1.5H2O}n (1) that contains asymmetric μ−O,O’ carboxylic bridge linking distorted square-pyramidal [Cu(μ-l-Arg)2]2+ coordination units. In 1D, the syn−anti−μ2−η1:η1zigzag polymer conformation, the adjacent Cu(II) ions are distanced by 5.707 Å, and the subsequent Cu∙∙∙Cu proximity in 1D-coordination chain equals 6.978 Å. Detailed interpretation of IR and Raman spectra of l-arginine and 1 was performed. The principal components of the g tensor determined from EPR experiments (gx = 2.059, gy = 2.075, gz = 2.228) indicate nearly axial symmetry of Cu(II) coordination sphere and correspond to the unpaired electron occupying the dx2–y2 orbital. The single broad band at 16,200 cm–1, characteristic of d−d transition, is assigned to the dominant dublet-dublet 2B1g(dx2–y2)→ 2Eg(dyz≈dxz) transition. Magnetic susceptibility measurements have revealed ferromagnetic coupling between the Cu(II) ions within the 1D-coordination chain, while the intermolecular coupling is antiferromagnetic. Graphical Abstract

Subjects

Subjects :
General Chemistry

Details

Database :
OpenAIRE
Accession number :
edsair.doi.dedup.....27c06c41d1f8daec9956c85073c72ffc
Full Text :
https://doi.org/10.21203/rs.3.rs-2208728/v1