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详细的从头算第一性原理研究了一族三角锥形铁(II)吡咯配合物的各向异性磁矩。

Detailed ab initio first-principles study of the magnetic anisotropy in a family of trigonal pyramidal iron(II) pyrrolide complexes.

机构信息

Institute for Physical and Theoretical Chemistry, University of Bonn, Wegelerstrasse 12, D-53115 Bonn, Germany.

出版信息

Inorg Chem. 2011 Aug 15;50(16):7460-77. doi: 10.1021/ic200196k. Epub 2011 Jul 11.

Abstract

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 (5)E ground state with strong in-state spin-orbit coupling (SOC). We study the competing effects of SOC and the (5)E⊗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.

摘要

探索了用于解释和预测具有轨道简并或轨道近简并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。该处理方法基于完全活性空间自洽场 (CASSCF) 波函数,结合 N 电子价微扰理论 (NEVPT2) 和准简并微扰理论 (QDPT) 处理磁场和自旋相关的相对论效应。该方法应用于一系列具有几乎三角双锥配位场的 Fe(II) 配合物,这些配合物由几种变体的三吡咯基甲基胺配体 (tpa) 提供。这些系统最近作为单核单分子磁体 (SMM) 配合物引起了广泛关注。本研究旨在确定如何微调配体场以最大限度地提高磁各向异性势垒。在三角配位场中,高自旋 Fe(II) 配合物采用轨道简并 (5)E 基态,具有强内态自旋轨道耦合 (SOC)。我们研究了 SOC 和 (5)E⊗ε 多模态 Jahn-Teller 效应作为 tpa 配体外围取代基的函数的竞争效应。发现这些细微的扭曲对磁各向异性有显著影响。使用来自 d(6)构型三重态和五重态的所有自旋多重态的严格处理,从第一性原理预测有效自旋哈密顿量 (SH) 方法的参数。基于非微扰方法,我们研究了在何种条件下 SH 方法是有效的,以及需要保留哪些项。结果表明,在最近报道的四个结构和磁性记录良好的系统的晶体结构中观察到的微小几何变形,即 Fe(tpa(R)) (R = 叔丁基,Tbu (1)、均三甲苯,Mes (2)、苯基,Ph (3) 和 2,6-二氟苯基,Dfp (4)),足以导致五个最低和热可及的自旋亚能级由 S = 2 SH 充分描述,前提是它扩展了一个四阶各向异性项。使用与实际物理一致的这种最简单的参数化,重新解释了目标系统的报告磁化数据,并发现与从头算结果非常吻合。从头算计算的多重态能量与配位场(角重叠)模型(从头算配位场,AILFT)非常一致地拟合。这允许确定键合参数,并定量证明了 D 值越来越负与外围配体引起的σ键强度变化之间的相关性。实际上,沿系列 1 > 2 > 3 > 4,配体的σ键合能力(因此路易斯碱性)降低。

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