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CASPT2 研究反夹心型双核 Cr(I)和 Fe(I)配合物与二氮分子的相互作用:这两个配合物在自旋多重性和配位结构上有显著差异。

CASPT2 study of inverse sandwich-type dinuclear Cr(I) and Fe(I) complexes of the dinitrogen molecule: significant differences in spin multiplicity and coordination structure between these two complexes.

机构信息

Fukui Institute for Fundamental Chemistry, Kyoto University , Takano-Nishihiraki-cho, Sakyo-ku, Kyoto 606-8103, Japan.

出版信息

J Phys Chem A. 2014 Feb 20;118(7):1247-57. doi: 10.1021/jp410410j. Epub 2014 Feb 10.

Abstract

Inverse sandwich-type complexes (ISTCs), (μ-N2)[M(AIP)]2 (AIPH = (Z)-1-amino-3-imino-prop-1-ene; M = Cr and Fe), were investigated with the CASPT2 method. In the ISTC of Cr, the ground state takes a singlet spin multiplicity. However, the singlet to nonet spin states are close in energy to each other. The thermal average of effective magnetic moments (μeff) of these spin multiplicities is close to the experimental value. The η(2)-side-on coordination structure of N2 is calculated to be more stable than the η(1)-end-on coordination one. This is because the d-orbital of Cr forms a strong dπ-π* bonding interaction with the π* orbital of N2 in molecular plane. In the ISTC of Fe, on the other hand, the ground state takes a septet spin multiplicity, which agrees well with the experimentally reported μeff value. The η(1)-end-on structure of N2 is more stable than the η(2)-side-on structure. In the η(1)-end-on structure, two doubly occupied d-orbitals of Fe can form two dπ-π* bonding interactions. The negative spin density is found on the bridging N2 ligand in the Fe complex but is not in the Cr complex. All these interesting differences between ISTCs of Cr and Fe are discussed on the basis of the electronic structure and bonding nature.

摘要

采用 CASPT2 方法研究了反三明治型配合物((μ-N2)[M(AIP)]2(AIPH = (Z)-1-氨基-3-亚氨基-1-丙烯; M = Cr 和 Fe))。在 Cr 的 ISTC 中,基态具有单重自旋多重性。然而,单重态到非单重态自旋态彼此接近。这些自旋多重态的有效磁矩(μeff)的热平均接近实验值。计算表明,N2 的η(2)-侧接配位结构比η(1)-端接配位结构更稳定。这是因为 Cr 的 d 轨道与分子平面中的 N2 的π轨道形成了强 dπ-π键合相互作用。另一方面,在 Fe 的 ISTC 中,基态具有七重自旋多重性,这与实验报道的μeff值非常吻合。N2 的η(1)-端接结构比η(2)-侧接结构更稳定。在η(1)-端接结构中,Fe 的两个占据的 d 轨道可以形成两个 dπ-π*键合相互作用。在 Fe 配合物中发现桥接 N2 配体上有负自旋密度,但在 Cr 配合物中没有。基于电子结构和键合性质,讨论了 Cr 和 Fe 的 ISTC 之间的这些有趣差异。

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