首页> 外文期刊>The journal of physical chemistry, A. Molecules, spectroscopy, kinetics, environment, & general theory >Density functional study of electron paramagnetic resonance parameters and spin density distributions of dicopper(I) complexes with bridging azo and tetrazine radical-anion ligands
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Density functional study of electron paramagnetic resonance parameters and spin density distributions of dicopper(I) complexes with bridging azo and tetrazine radical-anion ligands

机译:桥联偶氮和四嗪自由基-阴离子配体的双铜(I)配合物的电子顺磁共振参数和自旋密度分布的密度泛函研究

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摘要

There exists a growing class of dinuclear complexes with bridging radical-anion ligands that is of interest both for bioinorganic and for supermolecular chemistry. Their bonding situation as well as chemical and spectroscopic properties are not described adequately by standard models such as the ligand-field theory. For rational design of complexes with desired properties, it is thus necessary to understand better the interrelations between electronic structure, spin density, and electron paramagnetic resonance (EPR) parameters in dinuclear systems with redox-active bridging ligands and to evaluate the performance of density functional methods in their description. As particularly suitable, experimentally well-characterized representatives, a series of dinuclear copper(l) complexes with azo or tetrazine bridge ligands have been studied here by different density functional methods. To reproduce the available experimental metal hyperfine couplings, the inclusion of spin-orbit effects into the calculations is necessary. An unusual direction of the dependence of computed hyperfine couplings on an exact-exchange admixture into the exchange-correlation functional may be understood from a McConnell-type spin polarization of the a-framework of the bridge. Ligand nitrogen hyperfine couplings are also compared with experiment where available. Electronic g-tensors are reproduced well by the calculations and have been analyzed in detail in terms of atomic spin-orbit contributions and electronic excitations.
机译:越来越多的具有桥接的阴离子-阴离子配体的双核络合物对于生物无机化学和超分子化学都非常重要。它们的键合情况以及化学和光谱性质未通过配体场理论等标准模型充分描述。为了合理设计具有所需特性的配合物,因此有必要更好地了解具有氧化还原活性桥联配体的双核系统中电子结构,自旋密度和电子顺磁共振(EPR)参数之间的相互关系,并评估密度泛函的性能。方法中的描述。作为特别合适的,实验性良好的表征代表,此处已通过不同的密度泛函方法研究了一系列具有偶氮或四嗪桥配体的双核铜(l)配合物。为了重现可用的实验金属超细耦合,必须在计算中包含自旋轨道效应。可以从桥的a框架的McConnell型自旋极化理解计算的超精细耦合对交换相关函数中精确交换混合物的依赖性的异常方向。配体氮超细偶合也与实验进行了比较。计算结果很好地再现了电子g张量,并已根据原子自旋轨道贡献和电子激发进行了详细分析。

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