Quantum Computational Chemistry: Modeling and Calculation of S-Block Metal Ion Complexes

Rakesh Kumar, S. Obrai
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引用次数: 1

Abstract

The computational study of some s-block metal nitrophenolate complexes, [Ca(THEEN)(PIC)]+ (1), [Ca(THPEN)(H2O)2]2+ (2), Ba(THPEN)(PIC)2 (3) [Na(THPEN)]22+ (4), [Sr(THPEN)(H2O)2]22+ (5) and [Ba(THPEN)(H2O)2]22+ (6) (where THEEN (N,N,N′,N′-Tetrakis(2-hydroxyethyl)ethylenediamine) and THPEN (N,N,N′,N′-Tetrakis(2-hydroxypropyl)ethylenediamine) are tetrapodal ligands and PIC− is 2,4,6-trinitrophenolate anion), is presented here using density functional theory (DFT) in its hybrid form B3LYP. The geometries of the title complexes are described by the quantum-chemical approach using input coordinates obtained from the previously synthesized and X-ray characterized diffraction data of [Ca(THEEN)(PIC)](PIC), [Ca(THPEN)(H2O)2](PIC)2, Ba(THPEN)(PIC)2, [Na(THPEN)]2(PIC)2, [Sr(THPEN)(H2O)2]2(DNP)4 and [Ba(THPEN)(H2O)2]2(DNP)4 (where DNP is 3,5-dinitrophenolate). Only the primary coordination sphere of complexes (1–6) is optimized in the gaseous phase. Calculations of the energy gaps of frontier orbitals (HOMO-LUMO), 13C-NMR shifts and vibrational bands are carried out using B3LYP/6-31 g + (d,p)/LANL2DZ level of theory. The calculated geometric and spectral parameters reproduced the experimental data with a well agreement.
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量子计算化学:s -嵌段金属离子配合物的建模与计算
本文利用密度泛函理论(DFT)在其杂化形式B3LYP中对一些s-嵌段金属硝基苯酚配合物[Ca(THEEN)(PIC)]+ (1), [Ca(THPEN)(H2O)2]2+ (2), Ba(THPEN)(PIC)2 (3) [Na(THPEN)]22+ (4)], [Sr(THPEN)(H2O)2]22+(5)和[Ba(THPEN)(H2O)2]22+(6)进行了计算研究(其中THEEN (N,N,N ',N ' -Tetrakis(2-羟乙基)乙二胺)和THPEN (N,N,N ',N ' -Tetrakis(2-羟乙基)乙二胺)是四配体,PIC -是2,4,6-三硝基苯酚阴离子)。这些配合物的几何形状通过量子化学方法描述,输入坐标由先前合成的[Ca(THEEN)(PIC)](PIC)、[Ca(THPEN)(H2O)2](PIC)2、Ba(THPEN)(PIC)2、[Na(THPEN)]2(PIC)2、[Sr(THPEN)(H2O)2]2(DNP)4和[Ba(THPEN)(H2O)2]2(DNP)4 (DNP为3,5-二硝基苯酚)衍射数据得到。只有配合物(1-6)的初级配位球在气相中得到优化。利用B3LYP/6-31 g + (d,p)/LANL2DZ的理论能级计算了前沿轨道(HOMO-LUMO)的能隙、13C-NMR位移和振动带。计算得到的几何参数和光谱参数与实验数据吻合较好。
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