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四-μ-羧基-双(十二烷基烟酸根)二铜(II)配合物的合成、结构及磁性质;癸酸酯衍生物的晶体和分子结构

Synthesis, structure and magnetic properties of tetrakis-mu-carboxylato-bis(dodecylnicotinato)dicopper(II) complexes; crystal and molecular structure of the decyl carboxylate derivative.

作者信息

Rusjan M, Chaia Z, Piro O E, Guillon D, Cukiernik F D

机构信息

INQUIMAE, Departamento de Química Inorgánica, Analítica y Química Física, Facultad de Ciencias Exactas y Naturales, Universidad de Buenos Aires, Pabellón II, Argentina.

出版信息

Acta Crystallogr B. 2000 Aug;56(Pt 4):666-72. doi: 10.1107/s0108768100002056.

Abstract

Dodecylnicotinate bis-adducts of binuclear copper carboxylates, of the general formula Cu2(O2CC(n-1)H(2n-1))4(C5H4NCOOC12H25)2, were synthesized for n = 10, 12, 14, 16, 18 and 20, and their crystal structure, thermal behavior and magnetic properties studied. The molecular structure of the decyl derivative has been determined from single-crystal X-ray diffraction data. The dimer is centrosymmetric with the CuII ions in a square-pyramidal coordination with four O-alkyl O atoms [average d(Cu-O) 1.960 (6) A] in the basal plane and the nicotine N atom at apical positions [d(Cu-N) 2.183 (3) A]. The copper ions, 2.615 (1) A apart, are bridged by four O-alkyl carboxylate groups. Both the n = 20 and n = 18 homologues exhibit lamellar phases, which can be related to the supramolecular arrangement found in the n = 10 derivative. The magnetic behavior of the decyl and octadecyl dimers was studied in the 2-300 K temperature range. They exhibit a strong intramolecular antiferromagnetic interaction (Cu-Cu superexchange coupling constant J = -347 cm(-1) for the decyl derivative), which can be attributed to a large overlap of the metal 3d orbitals and the oxygen lone pair orbitals of the linking carboxylate groups.

摘要

合成了通式为Cu2(O2CC(n - 1)H(2n - 1))4(C5H4NCOOC12H25)2的双核羧酸铜的十二烷基烟酸双加合物,其中n = 10、12、14、16、18和20,并对其晶体结构、热行为和磁性进行了研究。已根据单晶X射线衍射数据确定了癸基衍生物的分子结构。二聚体是中心对称的,CuII离子呈四方锥配位,在基面中有四个O - 烷基O原子[平均d(Cu - O) 1.960 (6) Å],在顶端位置有尼古丁N原子[d(Cu - N) 2.183 (3) Å]。相距2.615 (1) Å的铜离子由四个O - 烷基羧酸根基团桥连。n = 20和n = 18的同系物均呈现层状相,这可能与在n = 10衍生物中发现的超分子排列有关。在2 - 300 K温度范围内研究了癸基和十八烷基二聚体的磁行为。它们表现出强烈的分子内反铁磁相互作用(癸基衍生物的Cu - Cu超交换耦合常数J = -347 cm(-1)),这可归因于金属3d轨道与连接羧酸根基团的氧孤对轨道的大量重叠。

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