首页> 外文OA文献 >Bis(α-diimine)iron Complexes: Electronic Structure Determination by Spectroscopy and Broken Symmetry Density Functional Theoretical Calculations
【2h】

Bis(α-diimine)iron Complexes: Electronic Structure Determination by Spectroscopy and Broken Symmetry Density Functional Theoretical Calculations

机译:双(α-二亚胺)铁配合物:电子结构的光谱测定和对称性破损的密度泛函理论计算

摘要

The electronic structure of a family comprising tetrahedral (α-diimine)iron dichloride, and tetrahedral bis(α-diimine)iron compounds has been investigated by Mössbauer spectroscopy, magnetic susceptibility measurements, and X-ray crystallography. In addition, broken-symmetry density functional theoretical (B3LYP) calculations have been performed. A detailed understanding of the electronic structure of these complexes has been obtained. A paramagnetic (S_t = 2), tetrahedral complex [Fe^(II)(^4L)_2], where (^4L)^(1−) represents the diamagnetic monoanion N-tert-butylquinolinylamide, has been synthesized and characterized to serve as a benchmark for a Werner-type complex containing a tetrahedral Fe^(II)N_4 geometry and a single high-spin ferrous ion. In contrast to the most commonly used description of the electronic structure of bis(α-diimine)iron(0) complexes as low-valent iron(0) species with two neutral α-diimine ligands, it is established here that they are, in fact, complexes containing two (α-diiminato)^(1−•) π radical monoanions and a high-spin ferrous ion (in tetrahedral N_4 geometry) (S_(Fe) = 2). Intramolecular antiferromagnetic coupling between the π radical ligands (S_(rad) = 1/2) and the ferrous ion (S_(Fe) = 2) yields the observed S_t = 1 ground state. The study confirms that α-diimines are redox noninnocent ligands with an energetically low-lying antibonding π^* lowest unoccupied molecular orbital which can accept one or two electrons from a transition metal ion. The (α-diimine)FeCl_2 complexes (St = 2) are shown to contain a neutral α-diimine ligand, a high spin ferrous ion, and two chloride ligands.
机译:通过Mössbauer光谱,磁化率测量和X射线晶体学研究了包含四面体(α-二亚胺)二氯化铁和四面体双(α-二亚胺)铁化合物的电子结构。此外,已经执行了破对称密度泛函理论(B3LYP)计算。已经获得了对这些配合物的电子结构的详细理解。合成了顺磁性(S_t = 2)四面体复合物[Fe ^(II)(^ 4L)_2],其中(^ 4L)^(1-)表示抗磁性单阴离子N-叔丁基喹啉基酰胺。作为含有四面体Fe ^(II)N_4几何结构和单个高自旋亚铁离子的Werner型配合物的基准。与最常用的双(α-二亚胺)铁(0)配合物作为具有两个中性α-二亚胺配体的低价铁(0)物种的电子结构描述相反,此处确定它们是实际上,络合物包含两个(α-二亚氨基)^(1-•)π单价阴离子和一个高旋转亚铁离子(在四面体N_4几何结构中)(S_(Fe)= 2)。 π自由基配体(S_(rad)= 1/2)和亚铁离子(S_(Fe)= 2)之间的分子内反铁磁耦合产生观察到的S_t = 1基态。研究证实,α-二亚胺是氧化还原非纯配体,其能量低的反键π^ *最低无占据分子轨道,可以接受来自过渡金属离子的一个或两个电子。 (α-二亚胺)FeCl_2络合物(St = 2)被证明含有中性α-二亚胺配体,高自旋亚铁离子和两个氯化物配体。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号