Spin distribution in copper(I) phosphine complexes of verdazyl radicals

D. J. Brook, Vincent W. Abeyta
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引用次数: 17

Abstract

Copper(I) forms mixed ligand coordination compounds with the stable, paramagnetic bipyridine analogue, 1,5-dimethyl-3-(2-pyridyl)-6-oxoverdazyl (pyvd) and a variety of monodentate and bidentate phosphine ligands. These compounds were characterized in solution by titration, UV-vis spectra, ESR spectra and electrospray mass spectrometry. Coordination of the phosphine gives a metal–ligand charge transfer transition in the UV-vis that is red shifted by more electron donating phosphines. ESR indicates that spin density on copper increases, both with strongly electron donating phosphines and with weakly basic phosphite ligands. This can be explained by the presence of two different orbital interactions: with more donating phosphines the interaction is predominantly through the filled copper(I) d-orbitals, but with weakly donating phosphite ligands the interaction is through an empty copper(I) p-orbital. The differing spin transfer mechanisms may have implications in the design of molecular magnetic systems.
铜(I)膦配合物中硫酰自由基的自旋分布
铜(I)与稳定的顺磁性联吡啶类似物1,5-二甲基-3-(2-吡啶基)-6-氧基(pyvd)和多种单齿和双齿膦配体形成混合配位化合物。用滴定法、紫外可见光谱、ESR光谱和电喷雾质谱对化合物进行了表征。磷化氢的配位使金属-配体在紫外-可见中发生电荷转移跃迁,该跃迁被更多提供电子的磷化氢红移。ESR表明,无论是强给电子膦还是弱碱性亚磷酸盐配体,铜上的自旋密度都增加了。这可以用两种不同的轨道相互作用来解释:对于更多的给体膦,相互作用主要是通过填满的铜(I) d轨道,但对于弱给体亚磷酸盐配体,相互作用是通过空的铜(I) p轨道。不同的自旋转移机制可能对分子磁系统的设计有指导意义。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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