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首页> 外文期刊>Dalton transactions: An international journal of inorganic chemistry >Nickel(ii) in chelate N_2O_2 environment. DFT approach and in-depth molecular orbital and configurational analysis
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Nickel(ii) in chelate N_2O_2 environment. DFT approach and in-depth molecular orbital and configurational analysis

机译:N_2O_2螯合环境中的镍(ii)。 DFT方法以及深入的分子轨道和构型分析

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The O-N-N-O-type tetradentate ligands H_2S,S-eddp (H_ 2S,S-eddp stands for S,S-ethylenediamine-N,N′-di-2-propionic acid) and H_2edap (H_2edap stands for ethylenediamine-N- acetic-N′-3-propionic acid) and the corresponding novel octahedral nickel(ii) complexes have been prepared and characterized. N_2O_ 2 ligands coordinate to the nickel(ii) ion via four donor atoms (two deprotonated carboxylate atoms and two amine nitrogens) affording octahedral geometry in the case of all investigated Ni(ii) complexes. A six coordinate, octahedral geometry has been verified crystallographically for the s-cis-[Ni(S,S-eddp)(H_2O)_2] complex. Structural data correlating similarly chelated Ni(ii) complexes have been used to carry out an extensive configuration analysis. Molecular mechanics and Density Functional Theory (DFT) have been used to model the most stable geometric isomer, yielding, at the same time, significant structural and spectroscopic (TDDFT) data. The results from density functional studies have been compared to X-ray data. Natural Bond Orbital (NBO) and Natural Energetic Decomposition Analysis (NEDA) have been done for the [Ni(edda-type)(H_2O)_(2-n)] and nH_ 2O fragments. Molecular orbital analysis (MPA) is given as well. The infra-red and electronic absorption spectra of the complexes are discussed in comparison to the related complexes of known geometries.
机译:ONNO型四齿配体H_2S,S-eddp(H_2S,S-eddp代表S,S-乙二胺-N,N'-二-2-丙酸)和H_2edap(H_2edap代表乙二胺-N-乙酸- N'-3-丙酸)和相应的新型八面体镍(ii)配合物已经制备并表征。 N_2O_2配体通过四个供体原子(两个去质子化的羧酸根原子和两个胺氮原子)与镍(ii)离子配位,在所有研究的镍(ii)配合物的情况下均具有八面体几何形状。晶体学上已针对s-顺式[Ni(S,S-eddp)(H_2O)_2]配合物验证了六坐标八面体的几何形状。与相似螯合的Ni(ii)络合物相关的结构数据已用于进行广泛的构型分析。分子力学和密度泛函理论(DFT)已用于对最稳定的几何异构体进行建模,同时产生了大量的结构和光谱(TDDFT)数据。密度泛函研究的结果已与X射线数据进行了比较。对[Ni(edda-type)(H_2O)_(2-n)]和nH_2O碎片进行了自然键轨道(NBO)和自然能分解分析(NEDA)。还给出了分子轨道分析(MPA)。与已知几何形状的相关配合物相比,讨论了配合物的红外和电子吸收光谱。

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