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Exploring fundamental differences between red- and blue-shifted intramolecular hydrogen bonds using FAMSEC, FALDI, IQA and QTAIM

机译:使用FAMSEC,Faldi,IQA和QTaim探索红蓝色移位氨氢键与蓝移分子内氢键之间的根本差异

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We have discovered, using developed by us recently FALDI and FAMSEC computational techniques, fundamentally distinct mechanisms of intramolecular red- and blue-shifted H-bond formation that occurred in different conformers of the same molecule (amino-acid beta-alanine) involving the same heteroatoms (O-H center dot center dot center dot N and N-H center dot center dot center dot O). Quantitative topological, geometric and energetic data of both H-bonds obtained with well-known QTAIM and IQA methodologies agree with what is known regarding H-bonding in general. However, the FALDI charge and decomposition scheme for calculating in real space 3D conformational deformation densities provided clear evidence that the process of electron density redistribution taking place on the formation of the stronger red-shifted H-bond is fundamentally distinct from the weaker blue-shifted H-bond. Contributions made by atoms of the X-H center dot center dot center dot Y-Z fragment (IUPAC notation) as well as distinct atoms on the H-bond formation were fully explored. The FAMSEC energy decomposition approach showed that the atoms involved in formation of the red-shifted H-bond interact in a fundamentally different fashion, both locally and with the remainder of the molecule, as compared with those of the blue-shifted H-bond. Excellent correlations of trends obtained with QTAIM, IQA, FAMSEC and FALDI techniques were obtained. Commentary regarding IUPAC recommended definition of an H-bond and validity of observed AILs (or bond paths) of the two H-bond kinds is also discussed.
机译:我们已经发现,使用美国最近的Faldi和Famsec计算技术的开发,从属于涉及相同分子(氨基酸β-丙氨酸)的不同塑造剂中发生的分子内红和蓝色偏移的H键形成的基本明显的机制杂原子(OH中心点中心点中心点N和NH中心点中心DOT中心点O)。用众所周知的QTAIM和IQA方法获得的H键的定量拓扑,几何和能量数据与一般认为H键合的内容同意。然而,用于计算实际空间3D构象变形密度的Faldi充电和分解方案提供了明确的证据表明,电子密度再分配的过程在形成更强的红移H键上的形成是根本不同的,从而与蓝移越弱H键。通过X-H中心点中心点中心点Y-Z片段(IUPAC符号)以及H键形成上的不同原子的贡献得到了全面的贡献。 FAMSEC能量分解方法表明,与蓝移H键相比,在本地和剩余的分子中,涉及形成红移H键的原子在局部和分子的其余部分中相互作用。获得了用Q值,IQA,FAMSEC和FALDI技术获得的趋势的优异相关性。还讨论了关于IUPAC建议的IUPAC推荐定义的概率定义,观察到的两种H债券类别(或债券路径)的H-Bond和有效性。

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