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首页> 外文期刊>Inorganica Chimica Acta >Molecular geometries, vibrational analysis, bonding and molecular orbitals of the three isomers of [RuCl(qn)(2)NO] (Hqn=2-methyl-8-quinolinol or 2-chloro-8-quinolinol): density functional theory studies
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Molecular geometries, vibrational analysis, bonding and molecular orbitals of the three isomers of [RuCl(qn)(2)NO] (Hqn=2-methyl-8-quinolinol or 2-chloro-8-quinolinol): density functional theory studies

机译:[RuCl(qn)(2)NO](Hqn = 2-甲基-8-喹啉醇或2-氯-8-喹啉醇)的三种异构体的分子几何结构,振动分析,键合和分子轨道:密度泛函理论研究

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摘要

The geometries of the three isomers of [RuCl(qn)(2)NO] {Hqn = 2-methyl-8-quinolinol (H2mqn) or 2-chloro-8-quinolinol (H2cqn)} were calculated with the restricted Hartree-Fock and different DFT methods. The B3PW91 method gave the best performance in the calculation for predicting the structure and vibrational spectrum of this series of complexes. The deviation between the calculated and the observed NO harmonic stretching frequencies was about 1% for these complexes. Furthermore, the IR bands containing the vibration of Ru-N, Ru-O and Ru-Cl of the complexes were successfully assigned with the help of theoretical calculations. The electronic structures of the complexes were calculated at B3PW91/Lan12dz level. The different bonding characteristic of the Ru-NO for the cis types of the 2cqn and 2mqn complexes was determined by the NBO population analysis. For both the 2mqn and 2cqn complexes, the HOMO is best described as a ligand based orbital which contains a small amount of Ru and NO character, while the LUMO is best represented by an antibonding overlap of the Ru(d) and pi* NO(p) orbitals. There is a large degree of mixing between the NO and the metal d orbitals in the frontier orbitals, indicating that the peculiarity of the {Ru-II-NO+} group affects the synthesis, structure and reactivity of nitrosylruthenium(II) complexes containing 8-quinolinol and its derivatives. The DFT calculations suggest that the trans isomers are more difficult to prepare than the respective cis isomers, which explains the experimental observations. (C) 2002 Elsevier Science B.V. All rights reserved. [References: 62]
机译:使用受限的Hartree-Fock计算[RuCl(qn)(2)NO] {Hqn = 2-甲基-8-喹啉醇(H2mqn)或2-氯-8-喹啉醇(H2cqn)}的三个异构体的几何形状和不同的DFT方法。 B3PW91方法在预测该系列配合物的结构和振动光谱方面,具有最佳的计算性能。对于这些配合物,计算出的和观察到的NO谐波拉伸频率之间的偏差约为1%。此外,借助理论计算,成功地指定了包含Ru-N,Ru-O和Ru-Cl的振动的红外波段。配合物的电子结构在B3PW91 / Lan12dz水平上计算。通过NBO种群分析确定了Ru-NO对2cqn和2mqn配合物的顺式类型的不同键合特性。对于2mqn和2cqn配合物,HOMO最好被描述为基于配体的轨道,其中包含少量的Ru和NO特征,而LUMO最好通过Ru(d)和pi * NO( p)轨道。 NO与前沿轨道中的d轨道之间存在大量混合,这表明{R​​u-II-NO +}基团的特殊性会影响含有8-的亚硝酰基钌(II)配合物的合成,结构和反应性。喹啉醇及其衍生物。 DFT计算表明反式异构体比相应的顺式异构体更难制备,这解释了实验观察。 (C)2002 Elsevier Science B.V.保留所有权利。 [参考:62]

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