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Quantitative Geometric Descriptions of the Belt Iron Atoms of the Iron-Molybdenum Cofactor of Nitrogenase and Synthetic Iron(II) Model Complexes

机译:固氮酶和合成铁(II)模型配合物的铁-钼辅因子的带铁原子的定量几何描述

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摘要

Six of the seven iron atoms in the iron-molybdenum cofactor of nitrogenase display an unusual geometry, which is distorted from the tetrahedral geometry that is most common in iron-sulfur clusters. This distortion pulls the iron along one C3 axis of the tetrahedron toward a trigonal pyramid. The trigonal pyramidal coordination geometry is rare in four-coordinate transition metal complexes. In order to document this geometry in a systematic fashion in iron(II) chemistry, we have synthesized a range of four-coordinate iron(II) complexes that vary from tetrahedral to trigonal pyramidal. Continuous shape measures are used for a quantitative comparison of the stereochemistry of the Fe atoms in the iron-molybdenum cofactor with those of the presently and previously reported model complexes, as well as with those in polynuclear iron-sulfur compounds. This understanding of the iron coordination geometry is expected to assist in the design of synthetic models for intermediates in the nitrogenase catalytic cycle.
机译:固氮酶的铁-钼辅助因子中的七个铁原子中的六个显示出不同寻常的几何形状,这与铁-硫簇中最常见的四面体几何形状有所不同。这种变形将铁沿四面体的一个C3轴拉向三角锥。三角锥体配位几何在四坐标过渡金属配合物中很少见。为了在铁(II)化学中以系统的方式记录这种几何形状,我们合成了一系列从四面体到三角锥变的四坐标铁(II)配合物。连续形状测量用于定量比较铁-钼辅因子中铁原子与当前和先前报道的模型配合物以及多核铁-硫化合物中铁原子的立体化学。预期对铁配位几何形状的理解将有助于设计固氮酶催化循环中间体的合成模型。

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