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对含有端基13族二价配体(CO)(4)Fe-ER、Fe(EMe)(5) 和Ni(EMe)(4)(E = B-Tl;R = Cp、N(SiH(3))(2)、Ph、Me)的过渡金属配合物中金属-配体键合进行的能量分析表明,在同配分子中存在显著的π键。

Energy analysis of metal-ligand bonding in transition metal complexes with terminal group-13 diyl ligands (CO)(4)Fe-ER, Fe(EMe)(5) and Ni(EMe)(4) (E = B-Tl; R = Cp, N(SiH(3))(2), Ph, Me) reveals significant pi bonding in homoleptical molecules.

作者信息

Uddin J, Frenking G

机构信息

Fachbereich Chemie, Philipps-Universität, Hans-Meerwein-Strasse, D-35032 Marburg, Germany.

出版信息

J Am Chem Soc. 2001 Feb 28;123(8):1683-93. doi: 10.1021/ja002845g.

Abstract

The metal-ligand bonds of the title compounds have been investigated with the help of an energy partitioning analysis at the DFT level. It was found that the attractive orbital interactions between Fe and ER in (CO)(4)Fe-ER arise mainly from Fe <-- ER sigma donation. Only the boron diyl complexes (CO)(4)Fe-BR have significant contributions by Fe --> ER pi back-donation, but the Fe <-- BR sigma-donation remains the dominant orbital interaction term. The relative contributions of Fe-ER sigma donation and pi back-donation are only slightly altered when R changes from a good pi donor to a poor pi donor. Electrostatic forces between the metal fragment and the diyl ligand are always attractive, and they are very strong. They arise from the attraction between the local negative charge concentration at the overall positively charged donor atom E of the Lewis base ER and the positive charge of the iron nucleus. Electrostatic interactions and covalent interactions in (CO)(4)Fe-ER complexes have a similar strength when E is Al--Tl and when R is a good pi donor substituent. The Fe-BR bonds of the boron carbonyldiyl complexes have a significantly higher ionic character than the heavier group-13 analogues. Weak pi donor substituents R enhance the ionic character of the (CO)(4)Fe-ER bond. The metal-ligand bonds in the homoleptic complexes Fe(EMe)(5) and Ni(EMe)(4) have a higher ionic character than in (CO)(4)Fe-ER. The contribution of the TM --> ER pi back-donation to the Delta E(orb) term becomes clearly higher and contributes significantly to the total orbital interactions in the homoleptic complexes where no other pi acceptor ligands are present. The ligand BMe is nearly as strong a pi acceptor in Fe(BMe)(5) as CO is in Fe(CO)(5).

摘要

借助密度泛函理论(DFT)水平的能量划分分析,对标题化合物的金属 - 配体键进行了研究。结果发现,(CO)(4)Fe - ER中Fe与ER之间有吸引力的轨道相互作用主要源于Fe←ER σ给予。只有硼二价基配合物(CO)(4)Fe - BR有显著的Fe→ER π反馈给予贡献,但Fe←BR σ给予仍是主要的轨道相互作用项。当R从一个好的π供体变为一个差的π供体时,Fe - ER σ给予和π反馈给予的相对贡献仅略有改变。金属片段与二价基配体之间的静电力总是有吸引力的,而且很强。它们源于路易斯碱ER中带正电的供体原子E上的局部负电荷集中与铁原子核正电荷之间的吸引。当E为Al - Tl且R为好的π供体取代基时,(CO)(4)Fe - ER配合物中的静电相互作用和共价相互作用强度相似。硼羰基二价基配合物的Fe - BR键比较重的第13族类似物具有明显更高的离子性。弱π供体取代基R增强了(CO)(4)Fe - ER键的离子性。同配物Fe(EMe)(5)和Ni(EMe)(4)中的金属 - 配体键比(CO)(4)Fe - ER中的具有更高的离子性。在没有其他π受体配体的同配物中,TM→ER π反馈给予对ΔE(orb)项的贡献明显更高,并且对总轨道相互作用有显著贡献。配体BMe在Fe(BMe)(5)中作为π受体的强度几乎与CO在Fe(CO)(5)中的强度相同。

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