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首页> 外文期刊>The Journal of Chemical Physics >TEMPERATURE DEPENDENCE OF HYDROGEN BONDING IN NEAT, LIQUID FORMAMIDE
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TEMPERATURE DEPENDENCE OF HYDROGEN BONDING IN NEAT, LIQUID FORMAMIDE

机译:液态二甲酰胺中氢键的温度依赖性

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Temperature dependent quadrupole coupling parameters (QCP), chi(Q), and quadrupole coupling asymmetry parameters, eta(Q), of neat, liquid formamide were calculated. These calculations are based on standard ab initio self-consistent field (SCF) methods at the 6-31G* level for eight different clusters and a quantum cluster equilibrium (QCE) model of liquids. The cluster sizes varied from one to six molecules and include linear and cyclic structures. The equilibrium populations of the different formamide clusters were calculated for temperatures between 270 and 400 K. These calculations indicate that at low temperatures a six-membered ring of formamide molecules involving hydrogen bonding between the trans amide deuteron and the oxygen is the dominant (95%) species. At higher temperatures the cluster populations change and the six-membered ring is gradually replaced, primarily by a linear tetramer. The temperature dependence of the calculated QCP values for nitrogen, oxygen and two of the deuterium nuclei (the carbonyl and trans deuterons) are all in good agreement with the experimentally measured NMR results. (C) 1995 American Institute of Physics. [References: 47]
机译:计算了纯净的液态甲酰胺与温度有关的四极偶合参数(QCP),chi(Q)和四极偶合不对称参数eta(Q)。这些计算基于液体中8个不同簇的标准从头算起自洽场(SCF)方法在6-31G *级别上。簇的大小从一到六个分子不等,并且包括线性和环状结构。计算了温度在270至400 K之间的不同甲酰胺簇的平衡种群。这些计算表明,在低温下,涉及反酰胺氘核与氧之间氢键的六元甲酰胺分子环占主导(95% )的物种。在较高的温度下,簇数发生变化,六元环逐渐被线性四聚体取代。氮,氧和两个氘核(羰基和反氘核)的QCP值的温度依赖性与实验测得的NMR结果完全吻合。 (C)1995年美国物理研究所。 [参考:47]

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