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The Effects of Oxidation States, Spin States and Solvents on Molecular Structure, Stability and Spectroscopic Properties of Fe-Catechol Complexes: A Theoretical Study 被引量:3
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作者 Mohammad A. Matin Mazharul M. Islam +1 位作者 Thomas Bredow Mohammed Abdul Aziz 《Advances in Chemical Engineering and Science》 2017年第2期137-153,共17页
In this study, in order to explain the solvent and spin state effects on the molecular structure of catechol-Fe complex [Fe(cat)3]n﹣?where n = 2 and 3, Hartree Fock (HF)-Density Functional Theory (DFT) hybrid calcula... In this study, in order to explain the solvent and spin state effects on the molecular structure of catechol-Fe complex [Fe(cat)3]n﹣?where n = 2 and 3, Hartree Fock (HF)-Density Functional Theory (DFT) hybrid calculations are performed at the B3LYP/6-311g(d,p) level of theory. The binding energies of Fe2+ and Fe3+ in high-spin state are higher than intermediate and low-spin states which show that the complex formation in a high spin state is more favorable. The calculated binding energies at different solvents indicate that the binding energies in polar solvents are lower than non-polar solvents. Furthermore, spectroscopic studies including FTIR and Raman spectrum in various solvents reveal that the formation of intermolecular bonds between the oxygen atom of carbonyl group and the hydrogen atom of solvent causes a spectral red shift. The calculated FTIR and geometry parameters are in good agreement with previous experimental data. Donor-acceptor interaction energies are evaluated due to the importance of the charge transfer in the complex formation. It is observed that the free electrons of oxygen atom interact with the antibonding orbitals of the iron. Finally, some correlations between the quantum chemical reactivity indices of the complexes and solvent polarity are considered. The study indicates a linear correlation between chemical hardness and binding energies of [Fe(cat)3]3﹣?complex. 展开更多
关键词 Transition Metal Iron-Catechol hf/dft Hybrid Method Solvent REACTIVITY Indices
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CH_3CN分子价壳层轨道电子动量分布的理论研究
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作者 周丽霞 燕友果 刘超卓 《科学技术与工程》 2009年第14期3960-3963,3973,共5页
采用密度泛函理论DFT-B3LYP方法,选用6-31G,6-311++G,6-311++G(d,p)和AUG-cc-pVTZ基组以及HF方法选用AUG-cc-pVTZ基组对CH3CN分子价壳层轨道电子动量分布进行了研究。理论计算与前人实验结果和利用Snyder和Basch波函数以及HF方法选用431... 采用密度泛函理论DFT-B3LYP方法,选用6-31G,6-311++G,6-311++G(d,p)和AUG-cc-pVTZ基组以及HF方法选用AUG-cc-pVTZ基组对CH3CN分子价壳层轨道电子动量分布进行了研究。理论计算与前人实验结果和利用Snyder和Basch波函数以及HF方法选用431G基组计算得到的理论的动量分布进行了比较。总体而言,除DFT-B3LYP/631G外,采用的其它几种计算均较前人理论计算与实验结果符合更好。对外价轨道7a1,1e和6a1,轨道电子的弥散效应很明显,而轨道的极化效应不明显,且7a1和6a1轨道的电子关联效应比较显著。对内价轨道,不同基组计算结果之间差别很小,表明内价壳层轨道极化和弥散效应很弱。 展开更多
关键词 电子动量分布 理论研究 hfdft理论方法 基组
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