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Molecular orbital calculations of hydrogen bonding in ammonia - Formic acid system in the presence of electric fields

机译:电场存在下氨-甲酸体系中氢键的分子轨道计算。

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The effects of electric fields on hydrogen bonding in ammonia-formic acid system, are examined with STO-3G and 6-31 G(d) wavefunctions. This system was used in a previous work to model hydrogen bonding in crystalline amino acids and the calculations were performed at HF/STO-3G level. The results on the relative position of the tautomeric equilibrium between the neutral and zwitterionic forms were explained in terms of the relative stabilization of the ionic partners as a function of their placement in positive and negative wells created by the external electric field.In order to rationalize those results at electronic structure level, in this paper we analyze the response of the molecular orbitals implicated in the hydrogen bridge, N...H...O, to various imposed external fields. It is found that the stabilization of the zwitterionic structure occurs due to the destabilization of the MO localized essentially at the nitrogen electron lone pair, n-orbital, and concomitant with the stabilization of the MO essentially localized at the functional oxygen electron lone pair, o-orbital. The stabilization of the neutral structure occurs in the opposite situation. In addition, these eigenvalues are shown to be adequate regional molecular descriptors of the base reactivity of amines and conjugated bases of carboxylic acids, in gas phase and in the presence of electric fields.
机译:用STO-3G和6-31 G(d)波函数检查了电场对氨-甲酸体系中氢键的影响。该系统在以前的工作中用于对结晶氨基酸中的氢键进行建模,并且计算是在HF / STO-3G水平进行的。关于中性和两性离子形式之间互变异构平衡的相对位置的结果,是根据离子配偶体的相对稳定性来解释的,这些离子配偶体是它们在外部电场产生的正负孔中的位置的函数。这些结果在电子结构水平上,在本文中,我们分析了涉及氢桥N ... H ... O的分子轨道对各种外加电场的响应。发现两性离子结构的稳定是由于基本位于氮电子孤对n轨道上的MO的去稳定化,并且与基本位于功能性氧电子孤对o上的MO的稳定相伴而生的。轨道中立结构的稳定在相反的情况下发生。另外,这些特征值被证明是在气相和在电场存在下胺和羧酸的共轭碱的碱反应性的足够的区域分子描述符。

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