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首页> 外文期刊>Journal of molecular graphics & modelling >Structures and properties of 1,8,15,22-tetrasubstituted phthalocyaninato zinc and nickel complexes: Substitution and axially coordination effects study based on density functional theory calculations
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Structures and properties of 1,8,15,22-tetrasubstituted phthalocyaninato zinc and nickel complexes: Substitution and axially coordination effects study based on density functional theory calculations

机译:1,8,15,22-四取代酞菁锌锌镍配合物的结构和性质:基于密度泛函理论计算的取代和轴向配位效应研究

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On the basis of the density functional theory (DFT) calculation of ZnPc (1), Zn[Pc(α-OC_5H_(11))_4] (2), Ni[Pc(α-OC_5H_(11))_4] (3), and Zn[Pc(α-OC_5H_(11))_4]·H_2O (4), the effects of non-peripheral substitution, different transition metals, and axial water coordination on the molecular structure, molecular orbital, atomic charge, infrared (IR) spectrum, and electronic absorption spectrum were investigated. The calculation results reveal that bulky 3-pentyloxy groups at the non-peripheral positions of the phthalocyanine ring evince great changes in structure and properties: they deflect the isoindole units, lift the frontier molecular orbitals, alter the atomic charge distribution, shift the bands of IR and electronic absorption spectra, etc. Though the central metal can shorten or lengthen the bond length, its effect on the electronic structure and properties of the phthalocyanine complex is very limited. Axial coordination significantly enhances the non-planarity of the phthalocyanine ring and, thus, alters the electronic structure, which is important for the formation of novel dimeric supramolecular structures through intermolecular hydrogen bonds. In addition, the calculated structures of 3 as well as the simulated IR and electronic absorption spectra of 4 were compared with the experimental data and showed good agreement.
机译:根据ZnPc(1)的密度泛函理论(DFT)计算,Zn [Pc(α-OC_5H_(11))_ 4](2),Ni [Pc(α-OC_5H_(11))_ 4](3 )和Zn [Pc(α-OC_5H_(11))_ 4]·H_2O(4),非外围取代,不同过渡金属和轴向水配位对分子结构,分子轨道,原子电荷,红外的影响(IR)光谱和电子吸收光谱被研究。计算结果表明,在酞菁环的非外围位置有大量的3-戊氧基,这表明结构和性质发生了巨大变化:它们偏转了异吲哚单元,抬升了前沿的分子轨道,改变了原子电荷的分布,改变了分子的能带。红外和电子吸收光谱等。尽管中心金属可以缩短或延长键长,但其对酞菁配合物的电子结构和性能的影响非常有限。轴向配位显着增强了酞菁环的非平面性,从而改变了电子结构,这对于通过分子间氢键形成新的二聚超分子结构很重要。此外,将3的计算结构以及4的模拟红外和电子吸收光谱与实验数据进行比较,显示出良好的一致性。

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