首页> 外文期刊>Dalton transactions: An international journal of inorganic chemistry >Ligand symmetry significantly affects spin crossover behaviour in isomeric [Fe(pybox)(2)](2+) complexes
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Ligand symmetry significantly affects spin crossover behaviour in isomeric [Fe(pybox)(2)](2+) complexes

机译:配体对称性显着影响异构体[Fe(pybox)(2)](2+)复合物中的旋转交叉行为

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摘要

The understanding of the correlation between the spin-state behaviour and the structural features in transition-metal complexes is of pronounced importance to the design of spin crossover compounds with high performance. However, the study of the influence of ligand symmetry on the spin crossover properties is still limited due to the shortage of suitable structural systems. Herein we report the magneto-structural correlations of three mononuclear Fe(ii) isomers with respect to their ligand symmetry. In this work, two phenyl-substituted meso and optically pure pybox ligands were employed to construct meso (1), optically pure (2), and racemic (3) ligand types of [Fe(pybox)(2)](2+) complexes. Their magnetic susceptibilities were measured via temperature-dependent paramagnetic H-1 NMR spectroscopy. We fitted the midpoint temperatures of the transition (T-1/2) of 260 K for 1(ClO4), 247 K for 2(ClO4), and 281 K for 3(ClO4). The influence of structural symmetry on spin crossover was rationalized through density functional theory calculations. The optimized structures of [Fe(pybox)(2)](2+) complex cations show that the geometric distortion of the central FeN6 coordination sphere is mainly caused by the steric congestions between adjacent phenyl substituents. In these compounds, there is a distinct correlation that more steric congestions produce larger coordination distortion and favor the electron configuration in the high-spin state, which reflects in the increase of T-1/2. Additionally, the influence of the counter anion and lattice solvent on the meso series compounds was inspected. It is revealed that multiple factors dominate the spin-state behaviour in the solid state. This work provides deep insight into the effect of ligand symmetry on the spin transition behaviour in spin crossover compounds. It demonstrates that molecular symmetry should be considered in the design of spin crossover compounds.
机译:了解过渡金属配合物的自旋态行为与结构特征之间的关系对于设计高性能的自旋交叉化合物具有重要意义。然而,由于缺乏合适的结构体系,配体对称性对自旋交叉性质影响的研究仍然有限。在此,我们报告了三个单核Fe(ii)异构体与其配体对称性的磁结构关联。在这项工作中,两个苯基取代的介观配体和光学纯的pybox配体被用于构建[Fe(pybox)(2)](2+)络合物的介观(1)、光学纯(2)和外消旋(3)配体类型。它们的磁化率是通过依赖于温度的顺磁H-1核磁共振谱测量的。我们拟合了过渡(T-1/2)的中点温度,1(ClO4)为260 K,2(ClO4)为247 K,3(ClO4)为281 K。通过密度泛函理论计算,合理化了结构对称性对自旋交叉的影响。[Fe(pybox)(2)](2+)配合物阳离子的优化结构表明,中心FeN6配位球的几何畸变主要是由相邻苯基取代基之间的空间拥挤引起的。在这些化合物中,存在一个明显的相关性,即更多的空间拥挤产生更大的配位畸变,并有利于高自旋态的电子组态,这反映在T-1/2的增加上。此外,还考察了反阴离子和晶格溶剂对meso系列化合物的影响。结果表明,多种因素主导了固态中的自旋态行为。这项工作为深入了解配体对称性对自旋交叉化合物中自旋跃迁行为的影响提供了依据。这表明在设计自旋交叉化合物时应考虑分子的对称性。

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    Hefei Univ Technol Sch Chem &

    Chem Engn Anhui Key Lab Adv Catalyt Mat &

    React Engn Hefei 230009 Peoples R China;

    Dalian Univ Technol State Key Lab Fine Chem 2 Linggong Rd Dalian 116024 Peoples R China;

    Northwest Univ Coll Chem &

    Mat Sci Minist Educ Key Lab Synthet &

    Nat Funct Mol Xian 710127 Peoples R China;

    Hefei Univ Technol Sch Chem &

    Chem Engn Anhui Key Lab Adv Catalyt Mat &

    React Engn Hefei 230009 Peoples R China;

    Hefei Univ Technol Sch Chem &

    Chem Engn Anhui Key Lab Adv Catalyt Mat &

    React Engn Hefei 230009 Peoples R China;

    Northwest Univ Coll Chem &

    Mat Sci Minist Educ Key Lab Synthet &

    Nat Funct Mol Xian 710127 Peoples R China;

    Dalian Univ Technol State Key Lab Fine Chem 2 Linggong Rd Dalian 116024 Peoples R China;

    Hefei Univ Technol Sch Chem &

    Chem Engn Anhui Key Lab Adv Catalyt Mat &

    React Engn Hefei 230009 Peoples R China;

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  • 正文语种 eng
  • 中图分类 化学;无机化学;
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