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三亚甲基甲烷型双(半醌)双自由基的交换耦合趋势以及交叉共轭体系中磁交换与混合价态的相关性。

Trends in exchange coupling for trimethylenemethane-type Bis(semiquinone) biradicals and correlation of magnetic exchange with mixed valency for cross-conjugated systems.

作者信息

Shultz David A, Fico Rosario M, Bodnar Scot H, Kumar R Krishna, Vostrikova Kira E, Kampf Jeff W, Boyle Paul D

机构信息

Department of Chemistry, North Carolina State University, Raleigh, North Carolina 27695-8204, USA.

出版信息

J Am Chem Soc. 2003 Sep 24;125(38):11761-71. doi: 10.1021/ja0367849.

Abstract

A magnetostructural correlation (conformational electron spin exchange modulation) within an isostructural series of biradical complexes is presented. X-ray crystal structures, variable-temperature electron paramagnetic resonance spectroscopy, zero-field splitting parameters, and variable-temperature magnetic susceptibility measurements were used to evaluate molecular conformation and electron spin exchange coupling in this series of molecules. Our combined results indicate that the ferromagnetic portion of the exchange couplings occurs via the cross-conjugated pi-systems, while the antiferromagnetic portion occurs through space and is equivalent to incipient bond formation. Thus, molecular conformation controls the relative amounts of ferro- and antiferromagnetic contributions to exchange coupling. In fact, the exchange parameter correlates with average semiquinone ring torsion angles via a Karplus-Conroy-type relation. Because of the natural connection between electron spin exchange coupling and electronic coupling related to electron transfer, we also correlate the exchange parameters in the biradical complexes to mixed valency in the corresponding quinone-semiquinone radical anions. Our results suggest that delocalization in the cross-conjugated, mixed-valent radical anions is proportional to the ferromagnetic contribution to the exchange coupling in the biradical oxidation states.

摘要

本文介绍了一系列同构双自由基配合物中的磁结构相关性(构象电子自旋交换调制)。利用X射线晶体结构、变温电子顺磁共振光谱、零场分裂参数和变温磁化率测量来评估该系列分子中的分子构象和电子自旋交换耦合。我们的综合结果表明,交换耦合的铁磁部分通过交叉共轭π-体系发生,而反铁磁部分通过空间发生,相当于初始键的形成。因此,分子构象控制着铁磁和反铁磁对交换耦合贡献的相对量。事实上,交换参数通过Karplus-Conroy型关系与平均半醌环扭转角相关。由于电子自旋交换耦合与与电子转移相关的电子耦合之间的天然联系,我们还将双自由基配合物中的交换参数与相应醌-半醌自由基阴离子中的混合价态相关联。我们的结果表明,交叉共轭混合价自由基阴离子中的离域与双自由基氧化态中交换耦合的铁磁贡献成正比。

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