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首页> 外文期刊>Physical chemistry chemical physics: PCCP >Proton transfer in the intramolecular NHN bonds in proton sponges with different hydrogen bridge flexibility
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Proton transfer in the intramolecular NHN bonds in proton sponges with different hydrogen bridge flexibility

机译:具有不同氢桥柔性的质子海绵中分子内NHN键的质子转移

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摘要

The proton transfer in the intramolecular NHN~+ hydrogen bonds of selected proton sponges has been studied using theoretical calculations of the potential energy surfaces (PES). The proton-transfer trajectory follows very closely the lowest energy path, derived as the quantum-mechanical reaction coordinates (QMRC). The bond order is not conserved in the transfer process. Even in the most flexible proton sponges there are considerable constraints on the N···N distance and the hydrogen bonds do not behave as intermolecular bonds. The curvature of QMRC is not a suitable criterion to distinguish between inter- and intramolecular NHN bonds. It appears that the determining factor for linearity is the degree of constraint, which is most likely the strongest in the benzene proton sponges. In the naphthalene proton sponges with relatively short N···N distances QMRC is more bent than in the benzene complexes with somewhat longer distances, opposite to what might be expected. It is important to note that in intramolecular complexes the PES is characterized by a single minimum, in contrast to a double minimum in intermolecular complexes. The experimentally determined NH bond lengths have been plotted on the potential energy surface and these points are all located on the QMRC curve, very close to the energy minimum of the PES. However, it is vital that the experimental X-ray hydrogen positions are then corrected to give the true internuclear NH distances.
机译:利用势能面(PES)的理论计算研究了所选质子海绵分子内NHN〜+氢键中的质子转移。质子转移轨迹非常接近最低能量路径,即量子力学反应坐标(QMRC)。债券定单在转移过程中不守恒。即使在最柔软的质子海绵中,N···N距离也受到相当大的限制,并且氢键的行为不像分子间键。 QMRC的曲率不是区分分子内和分子内NHN键的合适标准。似乎线性的决定因素是约束的程度,这很可能是苯质子海绵中最强的。在N···N距离相对较短的萘质子海绵中,QMRC比在距离较长的苯络合物中更弯曲,这与预期的相反。重要的是要注意,在分子内复合物中,PES的特征是单个最小值,而在分子间复合物中则是两倍的最小值。实验确定的NH键长度已绘制在势能面上,这些点均位于QMRC曲线上,非常接近PES的最小能量。但是,至关重要的是,然后对实验X射线氢的位置进行校正以给出真正的核内NH距离。

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