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The effect of a double n(O) -> pi*(C = O) intramolecular interaction on the stability of 3-nitrophthalic acid When the weaks beat an intramolecular hydrogen bond

机译:双N(O) - > Pi *(C = O)分子内相互作用对3-硝基苯二甲酸稳定性的影响,当弱者击败分子内氢键时

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摘要

It is not frequent that weak non-covalent interactions counteract moderate hydrogen bonds. And it is also very uncommon to observe two concurrent n -> pi* interactions, much less involving the same acceptor atom. In this work, we performed a theoretical analysis over all stable confomers of the 3-nitrophthalic acid. This compound has such a rich conformational variety, that it allowed us to compare different stabilizing and destabilizing effects as a function of a few dihedral angles. We found that the lowest-energy structure is the result of a balance between the stabilization provided by a double n -> pi* interaction, the global decrease of steric repulsions, and alteration of the electron delocalization. The contributions of these entities to the global molecular stability are coupled (i.e., all are affected when one is modified) in such a manner that the formation of a double n -> pi* interaction is preferred over the formation of a moderate hydrogen bond.
机译:不频繁的是非共价相互作用抵消了中等氢键。 观察两个并发n - > pi *相互作用也非常罕见,涉及相同的受体原子。 在这项工作中,我们对3-硝基苯二甲酸的所有稳定耦合进行了理论分析。 该化合物具有如此丰富的构象品种,使我们可以比较不同的稳定和稳定的效果,作为少数二面角的函数。 我们发现最低能量结构是由双N - > Pi *相互作用提供的稳定化之间的平衡的结果,其全球空间排斥力减少以及电子临床化的改变。 这些实体对全局分子稳定性的贡献是偶联的(即,当一个被修饰时,所有受到影响),使得双N - > Pi *相互作用的形成在中等氢键上是优选的。

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