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2,4-二吡唑基-1,3,5-三嗪衍生物的亚铁配合物——配体几何结构对金属离子自旋态的影响

Iron(II) Complexes of 2,4-Dipyrazolyl-1,3,5-triazine Derivatives-The Influence of Ligand Geometry on Metal Ion Spin State.

作者信息

Capel Berdiell Izar, Kulmaczewski Rafal, Halcrow Malcolm A

机构信息

School of Chemistry, University of Leeds , Woodhouse Lane, Leeds LS2 9JT, U.K.

出版信息

Inorg Chem. 2017 Aug 7;56(15):8817-8828. doi: 10.1021/acs.inorgchem.7b00699. Epub 2017 Jul 12.

DOI:10.1021/acs.inorgchem.7b00699
PMID:28699741
Abstract

Seven [FeL][BF] complex salts were prepared, where L is a 6-substituted 2,4-di(pyrazol-1-yl)-1,3,5-triazine (bpt) derivative. The complexes are all crystallographically high-spin, and exhibit significant distortions from an ideal D-symmetric coordination geometry. In one case, an unusual type of metal ion disorder was observed among a cubic array of ligands in the crystal lattice. The complexes are also high-spin between 3 and 300 K in the solid state and, where measured, between 239 and 333 K in CDCN solution. This result is unexpected, since homoleptic iron(II) complexes of related 2,6-di(pyrazol-1-yl)pyridine, 2,6-di(pyrazol-1-yl)pyrazine, and 2,6-di(pyrazol-1-yl)pyrimidine derivatives often exhibit thermal spin-crossover behavior. Gas-phase density functional theory calculations confirm the high-spin form of [Fe(bpt)] and its derivatives is stabilized relative to iron(II) complexes of the other ligand types. This reflects a weaker Fe/pyrazolyl σ-bonding interaction, which we attribute to a small narrowing of the chelate ligand bite angle associated with the geometry of the 1,3,5-triazinyl ring. Hence, the high-spin state of [Fe(bpt)] centers does not reflect the electronic properties of its heterocyclic ligand donors but is imposed by the bpt ligand conformation. A high-spin homoleptic iron(III) complex of one of the bpt derivatives was also synthesized.

摘要

制备了七种[FeL][BF]络合盐,其中L为6-取代的2,4-二(吡唑-1-基)-1,3,5-三嗪(bpt)衍生物。这些络合物在晶体学上均为高自旋态,且与理想的D对称配位几何结构存在显著畸变。在一种情况下,在晶格中配体的立方阵列中观察到一种不寻常的金属离子无序现象。这些络合物在固态下3至300 K之间以及在CDCN溶液中(测量时)239至333 K之间也为高自旋态。这一结果出乎意料,因为相关的2,6-二(吡唑-1-基)吡啶、2,6-二(吡唑-1-基)吡嗪和2,6-二(吡唑-1-基)嘧啶衍生物的同配铁(II)络合物通常表现出热自旋交叉行为。气相密度泛函理论计算证实,相对于其他配体类型的铁(II)络合物,[Fe(bpt)]及其衍生物的高自旋形式更为稳定。这反映出较弱的Fe/吡唑基σ键相互作用,我们将其归因于与1,3,5-三嗪基环几何结构相关的螯合配体咬角略有变窄。因此,[Fe(bpt)]中心的高自旋态并非反映其杂环配体供体的电子性质,而是由bpt配体构象所决定。还合成了一种bpt衍生物的高自旋同配铁(III)络合物。

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