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基于叔丁基氮氧自由基的杂二烯和杂累积二烯的磁调制:自旋离域和构象起着至关重要的作用。

Magnetic Modulation in Heteroallene and Heterocumulene Based tert-butyl Nitroxide Diradicals: Spin Delocalization and Conformation Play Crucial Roles.

机构信息

Department of Chemistry, University of North Bengal, Dist-Darjeeling, 734013, India.

出版信息

Chemphyschem. 2021 Jul 2;22(13):1379-1388. doi: 10.1002/cphc.202100161. Epub 2021 Jun 8.

Abstract

We have theoretically investigated the magnetic properties of heteroallene (>C=C=X-) and heterocumulene (>C=C=C=X-) based tert-butyl nitroxide diradicals (X is P/As). Calculation of magnetic exchange coupling constant (J) shows ferromagnetic interaction in heteroallene based diradicals. Whereas, in heterocumulene based diradicals, tuning of J value from antiferro- to ferro-magnetic state is observed from Z- to E- isomer. Delocalization of spin density from radical site to the coupler (in planar arrangement) is observed in spin distribution analysis which is also advocated by molecular orbital analysis. The typical feature of tert-butyl nitroxide radical creates spin delocalization along with spin polarization within the coupler. The J values of all the diradicals strongly depend on the dihedral angle between radical center and coupler. Magneto-structural correlation shows that the change in dihedral angle tunes the magnetic property for both the Z- and E- isomers of heterocumulenes depending on the spin accumulation on two nearby magnetic centers. The extent of spin delocalization and conformation of spin centers on the molecular axis are important for the different J values observed in our designed systems.

摘要

我们从理论上研究了基于叔丁基氮氧自由基(X 为 P/As)的杂二烯(>C=C=X-)和杂cumulene(>C=C=C=X-)的磁性。磁交换耦合常数(J)的计算表明,杂二烯基自由基呈现铁磁性相互作用。然而,在杂 cumulene 基自由基中,从 Z-异构体到 E-异构体,J 值可以从反铁磁性调谐到铁磁性。自旋密度从自由基位点到耦合体(在平面排列)的离域在自旋分布分析中被观察到,这也得到了分子轨道分析的支持。叔丁基氮氧自由基的典型特征是在耦合体中产生自旋离域和自旋极化。所有自由基的 J 值强烈依赖于自由基中心和耦合体之间的二面角。磁结构相关性表明,二面角的变化会根据两个相邻磁心的自旋积累情况,调谐杂 cumulenes 的 Z-和 E-异构体的磁性。在我们设计的体系中,自旋离域的程度和自旋中心在分子轴上的构象对观察到的不同 J 值很重要。

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