Suppr超能文献

保持直线型的挑战:解释原卟啉冠醚配合物中低自旋[FeNO]7单元的线性结构

The challenge of being straight: explaining the linearity of a low-spin [FeNO]7 unit in a tropocoronand complex.

作者信息

Tangen Espen, Conradie Jeanet, Ghosh Abhik

机构信息

Department of Chemistry, University of Tromsø, N-9037 Tromsø, Norway.

出版信息

Inorg Chem. 2005 Nov 28;44(24):8699-706. doi: 10.1021/ic050781a.

Abstract

We have carried out a density functional theory study of the S = 1/2 [FeNO]7 tropocoronand complex, Fe(5,5-TC)NO, as well as of some simplified models of this compound. The calculations accurately reproduce the experimentally observed trigonal-bipyramidal geometry of this complex, featuring a linear NO in an equatorial position and a very short Fe-N(NO) distance. Despite these unique structural features, the qualitative features of the bonding turn out to be rather similar for Fe(5,5-TC)NO and [FeNO]7 porphyrins. Thus, there is a close correspondence between the molecular orbitals (MOs) in the two cases. However, there is a critical, if somewhat subtle, difference in the nature of the singly occupied MOs (SOMOs) between the two. For square-pyramidal heme-NO complexes, the SOMO is primarily Fe d(z)2-based, which favors sigma-bonding interactions with an NO pi orbital, and hence a bent FeNO unit. However, for trigonal-bipyramidal Fe(5,5-TC)(NO), the SOMO is best described as primarily Fe d(x2-z2) in character, with the Fe-N(NO) vector being identified as the z direction. Apparently, such a d orbital is less adept at sigma bonding with NO and, as such, pi bonding dominates the Fe-NO interaction, leading to an essentially linear FeNO unit and a short Fe-N(NO) distance.

摘要

我们对S = 1/2的[FeNO]7环冠状配合物Fe(5,5-TC)NO以及该化合物的一些简化模型进行了密度泛函理论研究。计算结果准确地再现了该配合物实验观察到的三角双锥几何结构,其特征是赤道位置有一个线性的NO,且Fe-N(NO)距离非常短。尽管有这些独特的结构特征,但Fe(5,5-TC)NO和[FeNO]7卟啉的键合定性特征却相当相似。因此,两种情况下的分子轨道(MOs)有密切的对应关系。然而,两者之间单占据分子轨道(SOMOs)的性质存在一个关键的、尽管有些微妙的差异。对于四方锥型的血红素-NO配合物,SOMO主要基于Fe d(z)2,这有利于与NO π轨道形成σ键相互作用,从而形成弯曲的FeNO单元。然而,对于三角双锥型的Fe(5,5-TC)(NO),SOMO的最佳描述主要是Fe d(x2 - z2)性质,Fe-N(NO)向量被确定为z方向。显然,这样的d轨道不太擅长与NO形成σ键,因此,π键主导了Fe-NO相互作用,导致基本上是线性的FeNO单元和较短的Fe-N(NO)距离。

文献AI研究员

20分钟写一篇综述,助力文献阅读效率提升50倍。

立即体验

用中文搜PubMed

大模型驱动的PubMed中文搜索引擎

马上搜索

文档翻译

学术文献翻译模型,支持多种主流文档格式。

立即体验