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Computational Study of the Molecular Structure, Vibrational Spectra and Energetics of the OIO Cation

机译:OIO阳离子的分子结构,振动光谱和能量学的计算研究

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Molecular geometries for the cationic and neutral species of OXO (X=Cl, Br, and I) are optimized using the Hartree-Fock (HF) theory, the second order M┆ller-Plesset perturbation theory (MP2), the density functional theory with the B3LYP hybrid functional (B3LYP), and the coupled cluster theory using single and double excitation with a perturbational treatment of triplet excitation (CCSD[T]) methods, with two basis sets of triple zeta plus polarization quality. The single point calculations for these species are performed at the CCSD(T,Full) level. The harmonic vibrational frequencies for these species are calculated at the HF, MP2, B3LYP and CCSD(T) levels. The adiabatic ionization potential for OIO is calculated to be 936.7 kJ/mol at the CCSD(T,Full) level and the correct value is estimated to be around 945.4 kJ/mol.
机译:使用Hartree-Fock(HF)理论,二阶M┆ller-Plesset微扰理论(MP2)和密度泛函理论优化了OXO(X = Cl,Br和I)的阳离子和中性物质的分子几何结构B3LYP混合功能(B3LYP),以及使用单激发和双激发以及三重激发的扰动处理(CCSD [T])方法的耦合聚类理论,具有三组zeta和极化质量的两个基本集。这些物种的单点计算在CCSD(T,Full)级别进行。这些物质的谐波振动频率是在HF,MP2,B3LYP和CCSD(T)级别上计算的。在CCSD(T,Full)水平下,OIO的绝热电离电势经计算为936.7 kJ / mol,估计的正确值约为945.4 kJ / mol。

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