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首页> 外文期刊>Aro: The scientific journal of Koya University >Theoretical Calculations for the Acidity of Cyanopolyynes HC2n+1N (n = 0–5) in Gas and Aqueous Phases Using Ab initio Methods
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Theoretical Calculations for the Acidity of Cyanopolyynes HC2n+1N (n = 0–5) in Gas and Aqueous Phases Using Ab initio Methods

机译:从头算方法对气相和水中氰基炔烃HC2n + 1N(n = 0-5)的酸度进行理论计算

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摘要

Cyanopolyynes have been found in the interstellar medium, cold dust cloud Taurus Molecular Cloud-1, and the Titan’s atmosphere. Theoretical calculations are carried out to predict gas and aqueous phase acidities of a series of cyanopolyynes acids. Two levels of theory were used in this study, with the combination of density functional theory, and M?ller–Plesset perturbation (MP2) theory, MP2 methods with two types of basis set, namely, Pople’s 6–311++g (d, p) basis set and Dunning’s aug-cc-pVTZ basis set. The calculations of these molecules reveal that pKa values varying from 12.25 to 17.25 and indicate that the acidity of these molecules in aqueous phase increases whereas the acidity in gas phase decreases with an increasing chain length of these acids.
机译:在星际介质,冷尘云金牛座分子云1和泰坦大气中发现了氰基多炔。进行理论计算以预测一系列氰基聚炔酸的气相和水相酸度。本研究使用两个层次的理论,结合密度泛函理论和M?ller-Plesset摄动(MP2)理论,MP2方法具有两种类型的基集,即Pople的6–311 ++ g(d ,p)基础集和Dunning的aug-cc-pVTZ基础集。这些分子的计算表明,pKa值在12.25至17.25之间变化,表明这些分子在水相中的酸度增加,而在气相中的酸度随着这些酸的链长的增加而降低。

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