From Achiral Precursors to Copper Helical Coordination Polymers: Magnetic Properties and Electronic Structure

Rubio-Sepúlveda, F., Huechucura, S., Cruz, C., Reyes, A.M., Reyes-Lillo, S.E., Campo, J., Venegas-Yazigi, D., Paredes-García, V.

Abstract

We introduce two novel one-dimensional coordination polymers (CPs) with helical arrangements based on copper(II) and an achiral Schiff base ligand, [Cu(L)(DMF)(X)]n (X = NO3- (1) and Cl- (2)), where L = 2-{[(pyridin-3-yl)imino]methyl}phenol. Both structures crystallize in an orthorhombic unit cell with a P212121 space group. In both compounds, unconventional noncovalent interactions are fundamental for the structural features, modulating the dihedral angle ca. 70° between the two aromatic rings that are part of the organic ligand. Magnetic measurements indicate that weak antiferromagnetic interactions predominate in both CPs, with a J value of ?3.34 cm-1 for 1 and ?4.95 cm-1 for 2, corroborated by ab initio first-principles calculations. Furthermore, electronic structure analyses reveal a semiconductor behavior for both CPs. First-principles calculations predict small polaron localization around the Cu sites, with a higher formation of electron polarons in compound 1 than in 2. © 2024 American Chemical Society.

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Título según WOS: From Achiral Precursors to Copper Helical Coordination Polymers: Magnetic Properties and Electronic Structure
Título según SCOPUS: From Achiral Precursors to Copper Helical Coordination Polymers: Magnetic Properties and Electronic Structure
Título de la Revista: Crystal Growth and Design
Volumen: 24
Número: 17
Editorial: American Chemical Society
Fecha de publicación: 2024
Página de inicio: 7002
Página final: 7014
Idioma: English
URL: 10.1021/acs.cgd.4c00642
DOI:

10.1021/acs.cgd.4c00642

Notas: ISI, SCOPUS - ISI