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基于密度泛函理论的3,3'-(亚苄基)双(4-羟基香豆素)镧(III)配合物的分子建模与振动研究

DFT-based molecular modeling and vibrational study of the La(III) complex of 3,3'-(benzylidene)bis(4-hydroxycoumarin).

作者信息

Mihaylov Tzvetan, Trendafilova Natasha, Georgieva Ivelina

机构信息

Institute of General and Inorganic Chemistry, Bulgarian Academy of Sciences, 1113 Sofia, Bulgaria.

出版信息

J Mol Model. 2008 May;14(5):353-66. doi: 10.1007/s00894-008-0277-0. Epub 2008 Feb 20.

DOI:10.1007/s00894-008-0277-0
PMID:18286310
Abstract

Molecular modeling of the La(III) complex of 3,3'-(benzylidene)bis(4-hydroxycoumarin) (PhDC) was performed using density functional theory (DFT) methods at B3LYP/6-31G(d) and BP86/TZP levels. Both Stuttgart-Dresden effective core potential and ZORA approximation were applied to the La(III) center. The electron density distribution and the nucleophilic centers of the deprotonated ligand PhDC(2-) in a solvent environment were estimated on the basis of Hirshfeld atomic charges, electrostatic potential values at the nuclei, and Nalewajski-Mrozek bond orders. In accordance with the empirical formula La(PhDC)(OH)(H(2)O), a chain structure of the complex was simulated by means of two types of molecular fragment: (1) two La(III) cations bound to one PhDC(2-) ligand, and (2) two PhDC(2-) ligands bound to one La(III) cation. Different orientations of PhDC(2-), OH(-) and H(2)O ligands in the La(III) complexes were investigated using 20 possible La(PhDC(2-))(2)(OH)(H(2)O) fragments. Energy calculations predicted that the prism-like structure based on "tail-head" cis-LML2 type binding and stabilized via HO...HOH intramolecular hydrogen bonds is the most probable structure for the La(III) complex. The calculated vibrational spectrum of the lowest energy La(III) model fragment is in very good agreement with the experimental IR spectrum of the complex, supporting the suggested ligand binding mode to La(III) in a chain structure, namely, every PhDC(2-) interacts with two La(III) cations through both carbonylic and both hydroxylic oxygens, and every La(III) cation binds four oxygen atoms of two different PhDC(2-).

摘要

采用密度泛函理论(DFT)方法,在B3LYP/6 - 31G(d)和BP86/TZP水平上对3,3'-(亚苄基)双(4 - 羟基香豆素)(PhDC)的镧(III)配合物进行了分子模拟。斯图加特 - 德累斯顿有效核势和ZORA近似都应用于镧(III)中心。基于Hirshfeld原子电荷、原子核处的静电势值和Nalewajski - Mrozek键级,估算了去质子化配体PhDC(2-)在溶剂环境中的电子密度分布和亲核中心。根据经验式La(PhDC)(OH)(H₂O),通过两种类型的分子片段模拟了配合物的链状结构:(1)两个镧(III)阳离子与一个PhDC(2-)配体结合,(2)两个PhDC(2-)配体与一个镧(III)阳离子结合。使用20种可能的La(PhDC(2-))₂(OH)(H₂O)片段研究了PhDC(2-)、OH(-)和H₂O配体在镧(III)配合物中的不同取向。能量计算预测,基于“尾 - 头”顺式 - LML₂型结合并通过HO...HOH分子内氢键稳定的棱柱状结构是镧(III)配合物最可能的结构。计算得到的最低能量镧(III)模型片段的振动光谱与配合物的实验红外光谱非常吻合,支持了所提出的配体在链状结构中与镧(III)的结合模式,即每个PhDC(2-)通过羰基氧和羟基氧与两个镧(III)阳离子相互作用,每个镧(III)阳离子与两个不同PhDC(2-)的四个氧原子结合。

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本文引用的文献

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