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首页> 外文期刊>Journal of Physical Organic Chemistry >Chiral recognition in self-complexes of diketopiperazine derivatives
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Chiral recognition in self-complexes of diketopiperazine derivatives

机译:二酮哌嗪衍生物自络合物中的手性识别

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摘要

The chiral discrimination in the self-association of 2,5-diketopiperazines derivatives has been studied using density functional theory (DFT) methods. Hence, clusters from dimers to tetramers have been considered. We have found a variety of linear and cyclic structures depending on the geometry of the monomers. In general, the heterochiral dimers (RR:SS or SS:RR) are more stable than the homochiral ones (RR:RR or SS:SS) with slight energetic differences. Nevertheless, most of the larger clusters (trimers and tetramers) show changes in stability, the homochiral cyclic structures being favored due to the better geometry of the hydrogen bond and/or the higher number of interactions. Some interesting correlations between the hydrogen bond geometrical descriptors and theoretical parameters obtained from the Natural Bond Orbital analysis (NBO), Natural energy decomposition analysis (NEDA), and the Atoms in Molecules theory (AIM) have been found. The chiral discrimination in the recognition process of these self-complexes has been evaluated. In addition, evidence of cooperative effects has been observed.
机译:已经使用密度泛函理论(DFT)方法研究了2,5-二酮哌嗪衍生物的自缔合中的手性鉴别。因此,已经考虑了从二聚体到四聚体的簇。我们已经发现了多种线性和环状结构,这取决于单体的几何形状。通常,杂手性二聚体(RR:SS或SS:RR)比同型手性二聚体(RR:RR或SS:SS)更稳定,但能量差异很小。然而,大多数较大的团簇(三聚体和四聚体)显示出稳定性变化,由于氢键的几何形状更好和/或相互作用次数更高,因此优选手性环状结构。已发现氢键几何描述子与从自然键轨道分析(NBO),自然能分解分析(NEDA)和分子中的原子理论(AIM)获得的理论参数之间有一些有趣的关联。这些自我复合物的识别过程中的手性歧视已得到评估。另外,已经观察到协同作用的证据。

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