首页> 外文期刊>Polyhedron: The International Journal for Inorganic and Organometallic Chemistry >Axial ligand influence on geometries, charge distributions and electronic structures of iron tetraazamacrocycle [Fe~((II))TIM(X)(Y)]~(2+) complexes assessed by Density Functional Theory
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Axial ligand influence on geometries, charge distributions and electronic structures of iron tetraazamacrocycle [Fe~((II))TIM(X)(Y)]~(2+) complexes assessed by Density Functional Theory

机译:轴向配体对四氮杂铁[Fe〜((II))TIM(X)(Y)]〜(2+)配合物的几何构型,电荷分布和电子结构的影响

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We employed the Density Functional Theory along with small basis sets, B3LYP/LANL2DZ, for the study of FeTIM complexes with different pairs of axial ligands (CO, H_2O, NH_3, imidazole and CH_3CN). These calculations did not result in relevant changes of molecular quantities as bond lengths, vibrational frequencies and electronic populations supporting any significant back-donation to the carbonyl or acetonitrile axial ligands. Moreover, a back-donation mechanism to the macrocycle cannot be used to explain the observed changes in molecular properties along these complexes with CO or CH_3CN. This work also indicates that complexes with CO show smaller binding energies and are less stable than complexes with CH_3CN. Further, the electronic band with the largest intensity in the visible region (or close to this region) is associated to the transition from an occupied 3d orbital on iron to an empty π orbital located at the macrocycle. The energy of this Metal-to-Ligand Charge Transfer (MLCT) transition shows a linear relation to the total charge of the macrocycle in these complexes as given by Mulliken or Natural Population Analysis (NPA) formalisms. Finally, the macrocycle total charge seems to be influenced by the field induced by the axial ligands.
机译:我们采用密度泛函理论以及小的基集B3LYP / LANL2DZ来研究具有不同轴向配体对(CO,H_2O,NH_3,咪唑和CH_3CN)的FeTIM配合物。这些计算并没有导致分子数量的相关变化,如键长,振动频率和电子种群,都支持对羰基或乙腈轴向配体的任何显着的背向捐赠。此外,大环的回馈机制不能用来解释沿着这些与CO或CH_3CN的配合物观察到的分子性质变化。这项工作还表明,与CH_3CN的配合物相比,与CO的配合物显示出较小的结合能,并且稳定性较差。此外,在可见区域(或接近该区域)具有最大强度的电子带与从铁上的占据的3d轨道到位于大环的空π轨道的过渡相关。金属到配体电荷转移(MLCT)跃迁的能量与这些复合物中大环的总电荷呈线性关系,如Mulliken或自然种群分析(NPA)形式主义所给出的。最后,大环总电荷似乎受轴向配体感应场的影响。

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