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血红素-过氧-铜配合物[(F8TPP)FeIII-(O22-)-CuII(TMPA)](ClO4)的几何结构和电子结构

Geometric and electronic structure of the heme-peroxo-copper complex [(F8TPP)FeIII-(O22-)-CuII(TMPA)](ClO4).

作者信息

Del Río Diego, Sarangi Ritimukta, Chufán Eduardo E, Karlin Kenneth D, Hedman Britt, Hodgson Keith O, Solomon Edward I

机构信息

Department of Chemistry, Stanford University, Stanford, California 94305, USA.

出版信息

J Am Chem Soc. 2005 Aug 31;127(34):11969-78. doi: 10.1021/ja043374r.

Abstract

The geometric and electronic structure of the untethered heme-peroxo-copper model complex (F(8)TPP)Fe(III)-(O(2)(2)(-))-Cu(II)(TMPA) (1) has been investigated using Cu and Fe K-edge EXAFS spectroscopy and density functional theory calculations in order to describe its geometric and electronic structure. The Fe and Cu K-edge EXAFS data were fit with a Cu...Fe distance of approximately 3.72 A. Spin-unrestricted DFT calculations for the S(T) = 2 spin state were performed on (P)Fe(III)-(O(2)(2)(-))-Cu(II)(TMPA) as a model of 1. The peroxo unit is bound end-on to the copper, and side-on to the high-spin iron, for an overall mu-eta(1):eta(2) coordination mode. The calculated Cu...Fe distance is approximately 0.3 A longer than that observed experimentally. Reoptimization of (P)Fe(III)-(O(2)(2)(-))-Cu(II)(TMPA) with a 3.7 A Cu...Fe constrained distance results in a similar energy and structure that retains the overall mu-eta(1):eta(2)-peroxo coordination mode. The primary bonding interaction between the copper and the peroxide involves electron donation into the half-occupied Cu d(z)2 orbital from the peroxide pi(sigma) orbital. In the case of the Fe(III)-peroxide eta(2) bond, the two major components arise from the donor interactions of the peroxide pi*(sigma) and pi*(v) orbitals with the Fe d(xz) and d(xy) orbitals, which give rise to sigma and delta bonds, respectively. The pi*(sigma) interaction with both the half-occupied d(z)2 orbital on the copper (eta(1)) and the d(xz) orbital on the iron (eta(2)), provides an effective superexchange pathway for strong antiferromagnetic coupling between the metal centers.

摘要

为了描述无束缚血红素 - 过氧 - 铜模型配合物(F(8)TPP)Fe(III)-(O₂²⁻)-Cu(II)(TMPA) (1)的几何和电子结构,使用铜和铁的K边扩展X射线吸收精细结构(EXAFS)光谱以及密度泛函理论计算对其进行了研究。铁和铜的K边EXAFS数据拟合得到的铜...铁距离约为3.72 Å。以[(P)Fe(III)-(O₂²⁻)-Cu(II)(TMPA)]⁺作为1的模型,对S(T)=2自旋态进行了自旋非限制密度泛函理论计算。过氧单元以端基方式与铜配位,以侧基方式与高自旋铁配位,形成整体的μ-η¹:η²配位模式。计算得到的铜...铁距离比实验观测值长约0.3 Å。对[(P)Fe(III)-(O₂²⁻)-Cu(II)(TMPA)]⁺进行3.7 Å铜...铁约束距离的重新优化,得到了具有相似能量和结构的结果,且保留了整体的μ-η¹:η² - 过氧配位模式。铜与过氧化物之间的主要键合相互作用涉及过氧化物π(σ)轨道向半占据的铜d(z)²轨道的电子给予。在Fe(III)-过氧化物η²键的情况下,两个主要成分分别来自过氧化物π*(σ)和π*(ν)轨道与铁d(xz)和d(xy)轨道的供体相互作用,分别形成σ键和δ键。π*(σ)与铜上半占据的d(z)²轨道(η¹)和铁上的d(xz)轨道(η²)的相互作用,为金属中心之间的强反铁磁耦合提供了有效的超交换途径。

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