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固态中存在强分子间反铁磁二氮杂戊搭烯-二氮杂戊搭烯耦合。

Strong intermolecular antiferromagnetic verdazyl-verdazyl coupling in the solid state.

作者信息

Eusterwiemann S, Doerenkamp C, Dresselhaus T, Janka O, de Oliveira M, Daniliuc C G, Eckert H, Neugebauer J, Pöttgen R, Studer A

机构信息

Institute of Organic Chemistry, Westfälische Wilhelms-Universität Münster, Corrensstrasse 40, 48149 Münster, Germany.

出版信息

Phys Chem Chem Phys. 2017 Jun 21;19(24):15681-15685. doi: 10.1039/c7cp02950k.

Abstract

Strong magnetic couplings are generally observed intramolecularly in organic diradicals or in systems in which they are promoted by crystal engineering strategies involving, for example, transition metal ligation. We herein present a strong intermolecularly coupling verdazyl radical in the solid state without the use of such design strategies. The crystal structure of an acetylene-substituted verdazyl radical shows a unique antiparallel face-to-face orientation of the neighboring verdazyl molecules along with verdazyl-acetylene interactions giving rise to an alternating antiferromagnetic Heisenberg chain. Single crystal structural data at 80, 100, 173, and 223 K show that one of the π-stacking distances depends on temperature, while heat capacity data indicate the absence of a phase transition. Based on this structural input, broken symmetry DFT calculations predict a change from an alternating linear Heisenberg chain with two comparable coupling constants J and J at higher temperatures towards dominant pair interactions at lower temperatures. The predicted antiferromagnetic coupling is confirmed experimentally by magnetic susceptibility, solid-state EPR and NMR spectroscopic results.

摘要

强磁耦合通常在有机双自由基分子内或通过晶体工程策略促进的体系中观察到,例如涉及过渡金属配位的体系。我们在此展示了一种在固态下不使用此类设计策略的强分子间耦合的连氮自由基。乙炔取代的连氮自由基的晶体结构显示出相邻连氮分子独特的反平行面对面取向,以及连氮 - 乙炔相互作用,形成交替的反铁磁海森堡链。80、100、173和223 K下的单晶结构数据表明,其中一个π堆积距离取决于温度,而热容数据表明不存在相变。基于此结构信息,破缺对称性密度泛函理论计算预测,在较高温度下具有两个可比耦合常数J和J的交替线性海森堡链会在较低温度下转变为主导的配对相互作用。通过磁化率、固态电子顺磁共振和核磁共振光谱结果实验证实了预测的反铁磁耦合。

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