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首页> 外文期刊>Australian Journal of Chemistry: A Journal for the Publication of Original Research in All Branches of Chemistry >Quantum-Chemical Ab Initio Calculations on Inda- and Thallabenzene (C5H5In and C5H5Tl) and their Structural Isomers eta(5)-C5H5In and eta(5)-C5H5Tl
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Quantum-Chemical Ab Initio Calculations on Inda- and Thallabenzene (C5H5In and C5H5Tl) and their Structural Isomers eta(5)-C5H5In and eta(5)-C5H5Tl

机译:Quantum-Chemical AB Initio(C5H5IN和C5H5TL)及其结构异构体ETA(5)-C5H5IN和ETA(5)-C5H5TL上的计算

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摘要

Quantum-chemical ab initio, time-independent, as well as time-dependent density functional theory (TD-DFT) calculations were performed on the so far elusive heterocycles inda- and thallabenzene (C5H5In and C5H5Tl), employing several different methods (MP2, CISD, CCSD, CCSD(T), BD, BD(T), QCISD, QCISD(T), CASSCF, DFT/B3LYP), effective core potentials, and different basis sets. While calculations on the MP2 level predict the ground states of the title compounds to be singlets with the first triplet states between 13 and 15 kcal mol(-1) higher in energy, single point calculations with the QCISD(T), CCSD(T), and BD(T) methods at CCSD-optimized structures result in energy differences between the singlet and the triplet states in the range between 0.3 and 2.1 kcal mol(-1) in favour of the triplet states. According to a CASSCF(8,8) calculation the triplets are also more stable by about 2.5-2.9 kcal mol(-1). Calculations were also performed for the C-5v-symmetric eta(5) structural isomers (cyclopentadienylindium, CpIn, and cyclopentadienylthallium, CpTl, Cp = C5H5) of the title compounds. At the highest level of theory employed in this study, C5H5In is between 79 and 88 kcal mol(-1) higher in energy than CpIn, while this energy difference is even larger for thallabenzene where C5H5Tl is energetically between 94 and 102 kcal mol(-1) above CpTl. In addition we report on the UV/vis spectra calculated with a TD-DFT method as well as on the spectra of the normal modes of C5H5In and C5H5Tl. Both types of spectra might facilitate identification of the title compounds eventually formed in photolysis or pyrolysis experiments.
机译:Quantum-Chemical AB Initio,时间与替代的杂环(C5H5IN和C5H5TL)对诸如难以置信的杂环(C5H5IN和C5H5T1)进行的时间依赖性和时间依赖性的密度官能理论(TD-DFT)计算,采用几种不同的方法(MP2, CISD,CCSD,CCSD(T),BD,BD(T),QCISD,QCISD(T),CASSCF,DFT / B3LYP),有效核心电位和不同的基础集。虽然MP2水平的计算预测标题化合物的地面状态,其具有在能量的13至15千卡摩尔(-1)之间的第一个三重态态的单身,单点计算,QCISD(T),CCSD(T) CCSD优化结构处的BD(T)方法导致单次态和三联状态之间的能量差异在0.3和2.1kcal(-1)的范围内,有利于三重态态。根据CASSCF(8,8)计算,三态细胞也更稳定约2.5-2.9千卡摩尔(-1)。还针对标题化合物的C-5V-Symmetric ETA(5)结构异构体(环戊二烯基茚,CPIN和环戊二烯,CPT1,CP = C5H5)进行计算。在本研究中使用的最高级别的理论中,C5H5In在能量高于CPIN的79和88千卡摩尔(-1)之间,而C5H5T1在94到102 kcal摩尔( - 1)上面的CPTL。此外,我们报告用TD-DFT方法计算的UV / VI光谱以及C5H5IN和C5H5TL的正常模式的光谱。两种类型的光谱可能有助于鉴定最终形成在光解或热解实验中的标题化合物。

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