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首页> 外文期刊>Inorganic Chemistry: A Research Journal that Includes Bioinorganic, Catalytic, Organometallic, Solid-State, and Synthetic Chemistry and Reaction Dynamics >Detailed Ab initio first-principles study of the magnetic anisotropy in a family of trigonal pyramidal iron(II) pyrrolide complexes
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Detailed Ab initio first-principles study of the magnetic anisotropy in a family of trigonal pyramidal iron(II) pyrrolide complexes

机译:详细的从头算第一原理研究一类三角锥体吡咯铁(II)配合物的磁各向异性

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摘要

A theoretical, computational, and conceptual framework for the interpretation and prediction of the magnetic anisotropy of transition metal complexes with orbitally degenerate or orbitally nearly degenerate ground states is explored. The treatment is based on complete active space self-consistent field (CASSCF) wave functions in conjunction with N-electron valence perturbation theory (NEVPT2) and quasidegenerate perturbation theory (QDPT) for treatment of magnetic field- and spin-dependent relativistic effects. The methodology is applied to a series of Fe(II) complexes in ligand fields of almost trigonal pyramidal symmetry as provided by several variants of the tris-pyrrolylmethyl amine ligand (tpa). These systems have recently attracted much attention as mononuclear single-molecule magnet (SMM) complexes. This study aims to establish how the ligand field can be fine tuned in order to maximize the magnetic anisotropy barrier. In trigonal ligand fields high-spin Fe(II) complexes adopt an orbitally degenerate ~5E ground state with strong in-state spin-orbit coupling (SOC). We study the competing effects of SOC and the ~5E - ε multimode Jahn-Teller effect as a function of the peripheral substituents on the tpa ligand. These subtle distortions were found to have a significant effect on the magnetic anisotropy. Using a rigorous treatment of all spin multiplets arising from the triplet and quintet states in the d~6 configuration the parameters of the effective spin-Hamiltonian (SH) approach were predicted from first principles. Being based on a nonperturbative approach we investigate under which conditions the SH approach is valid and what terms need to be retained. It is demonstrated that already tiny geometric distortions observed in the crystal structures of four structurally and magnetically well-documented systems, reported recently, i.e., [Fe(tpa~R)]~- (R = tert-butyl, Tbu (1), mesityl, Mes (2), phenyl, Ph (3), and 2,6-difluorophenyl, Dfp (4), are enough to lead to five lowest and thermally accessible spin sublevels described sufficiently well by S = 2 SH provided that it is extended with one fourth order anisotropy term. Using this most elementary parametrization that is consistent with the actual physics, the reported magnetization data for the target systems were reinterpreted and found to be in good agreement with the ab initio results. The multiplet energies from the ab initio calculations have been fitted with remarkable consistency using a ligand field (angular overlap) model (ab initio ligand field, AILFT). This allows for determination of bonding parameters and quantitatively demonstrates the correlation between increasingly negative D values and changes in the σ-bond strength induced by the peripheral ligands. In fact, the sigma-bonding capacity (and hence the Lewis basicity) of the ligand decreases along the series 1 > 2 > 3 > 4.
机译:探索了用于解释和预测轨道简并或轨道简简基态的过渡金属配合物的磁各向异性的理论,计算和概念框架。该处理基于完全活动空间自洽场(CASSCF)波函数,结合N电子价态扰动理论(NEVPT2)和准生成扰动理论(QDPT),用于处理磁场和自旋相关的相对论效应。该方法应用于三棱锥对称的配体场中的一系列Fe(II)配合物,由三-吡咯烷基甲胺配体(tpa)的几种变体提供。这些系统作为单核单分子磁体(SMM)配合物最近引起了很多关注。这项研究旨在确定如何微调配体场,以最大化磁各向异性势垒。在三角配体场中,高自旋的Fe(II)配合物采用轨道简并的〜5E基态,并具有强态的自旋轨道耦合(SOC)。我们研究了SOC和〜5E-ε多模Jahn-Teller效应的竞争效应,它们是tpa配体上外围取代基的函数。发现这些细微的畸变对磁各向异性具有重大影响。通过严格处理d〜6构型中由三重态和五重态引起的所有自旋多重态,有效的自旋哈密顿(SH)方法的参数是根据第一原理进行预测的。基于非摄动方法,我们研究了SH方法在哪些条件下有效以及需要保留哪些术语。事实证明,最近报道了在四个结构和磁性良好记录的系统的晶体结构中已经观察到的微小几何变形,即[Fe(tpa〜R)]〜-(R =叔丁基,Tbu(1), Mesityl,Mes(2),苯基Ph(3)和2,6-二氟苯基Dfp(4)足以导致五个最低且热可及的自旋亚能级,由S = 2 SH充分描述,前提是扩展了一个四阶各向异性项,使用了与实际物理学一致的最基本的参数化方法,重新解释了所报告的目标系统的磁化数据,并与从头算结果完全吻合。使用配体场(角重叠)模型(从头算起的配体场,AILFT)可以使初始计算具有显着的一致性,从而可以确定键合参数并定量证明负电荷之间的相关性e D值和外围配体引起的σ键强度变化。实际上,配体的sigma键容量(以及Lewis碱度)沿1> 2> 3> 4的序列下降。

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