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Biomimetic mono- and dinuclear Ni(I) and Ni(II) complexes studied by X-ray absorption and emission spectroscopy and quantum chemical calculations

机译:通过X射线吸收和发射光谱和量子化学计算研究的生物摩托的单颗粒和镍氢Ni(I)和Ni(II)复合物

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Five biomimetic mono- or dinuclear nickel complexes featuring Ni(I) or Ni(II) sites were studied by X-ray absorption and emission spectroscopy and DFT calculations. Ni K-edge XANES spectra and Kβ main and satellite emission lines were collected on powder samples. The pre-edge absorption transitions (core-to-valence excitation) and Kβ_(2,5) emission transitions (valence-to-core decay) were calculated using DFT (TPSSh/TZVP) on crystal structures. This yielded theoretical ctv and vtc spectra in near-quantitative agreement with the experiment, showing the adequacy of the DFT approach for electronic structure description, emphasizing the sensitivity of the XAS/XES spectra for ligation/redox changes at nickel, and revealing the configuration of unoccupied and occupied valence levels, as well as the spin-coupling modes in the dinuclear complexes. XAS/XES-DFT is valuable for molecular and electronic structure analysis of synthetic complexes and of nickel centers in H_2 or CO_x converting metalloenzymes.
机译:通过X射线吸收和发射光谱和DFT计算,研究了具有Ni(I)或Ni(II)位点的五种生物菊素或二核镍复合物。在粉末样品上收集Ni K-Edge Xanes Spectra和Kβ主和卫星排放线。使用DFT(TPSSH / TZVP)在晶体结构上计算预先边缘吸收转变(核心对价激发)和Kβ_(价值腐烂)。这在近乎定量协议中产生了理论CTV和VTC光谱,呈现出电子结构描述的DFT方法的充分性,强调XAS / XES光谱在镍处进行连接/氧化还原的敏感性,并揭示无人居住,占用的价水平,以及二维配合物中的自旋偶联模式。 XAS / XES-DFT对于H_2或CO_X转化金属酶的合成络合物和镍中心的分子和电子结构分析是有价值的。

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