首页> 外文期刊>Dalton transactions: An international journal of inorganic chemistry >Prediction of high-valent iron K-edge absorption spectra by time-dependent Density Functional Theory
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Prediction of high-valent iron K-edge absorption spectra by time-dependent Density Functional Theory

机译:时变密度泛函理论预测高价铁的K-边缘吸收光谱

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摘要

In recent years, a number of high-valent iron intermediates have been identified as reactive species in iron-containing metalloproteins. Inspired by the interest in these highly reactive species, chemists have synthesized Fe(iv) and Fe(v) model complexes with terminal oxo or nitrido groups, as well as a rare example of an Fe(vi)-nitrido species. In all these cases, X-ray absorption spectroscopy has played a key role in the identification and characterization of these species, with both the energy and intensity of the pre-edge features providing spectroscopic signatures for both the oxidation state and the local site geometry. Here we build on a time-dependent DFT methodology for the prediction of Fe K- pre-edge features, previously applied to ferrous and ferric complexes, and extend it to a range of Fe(iv), Fe(v) and Fe(vi) complexes. The contributions of oxidation state, coordination environment and spin state to the spectral features are discussed. These methods are then extended to calculate the spectra of the heme active site of P450 Compound II and the non-heme active site of TauD. The potential for using these methods in a predictive manner is highlighted.
机译:近年来,许多高价铁中间体已被确定为含铁金属蛋白中的反应物种。受到对这些高反应性物种的兴趣的启发,化学家合成了具有末端氧代或硝基基团的Fe(iv)和Fe(v)模型配合物,以及Fe(vi)-nitrido物种的稀有实例。在所有这些情况下,X射线吸收光谱学在这些物种的鉴定和表征中都发挥了关键作用,其前缘特征的能量和强度为氧化态和局部位点几何结构提供了光谱学特征。在这里,我们基于时间相关的DFT方法预测Fe K-边缘特征,该特征先前应用于铁和铁配合物,并将其扩展到Fe(iv),Fe(v)和Fe(vi )复合体。讨论了氧化态,配位环境和自旋态对光谱特征的贡献。然后扩展这些方法以计算P450化合物II的血红素活性位点和TauD的非血红素活性位点的光谱。突出显示了以预测方式使用这些方法的潜力。

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