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Investigation of conventional and non-conventional hydrogen bonds: a comparison of fluorine-substituted and non-fluorine substituted compounds

机译:常规和非常规氢键的研究:氟取代和非氟取代化合物的比较

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Two fluorine and bromine Boc protected phenoxypropanamine compounds were investigated to determine how hydrogen bonds affect the dynamic behaviour of an organic molecule. Using single crystal X-ray diffraction, the presence of a folded backbone for the fluorine-containing compound was established. In addition, the presence of an inter-molecular (conventional and non-conventional) hydrogen bond was detected by XRD. To investigate the conformational preference and available interactions in solution, variable temperature NMR at two different concentrations, 2D NMR at low temperature and quantum mechanics studies were performed. These investigations confirmed that the observed interactions in the solid phase were maintained in solution. However, competition between inter- and intra non-conventional hydrogen bond (originating from fluorine atoms) was detected at high temperature in dilute solution. Our studies suggest that fluorine assisted inter-molecular cross-coupling at room temperature. This study possibly introduces a new tool for manipulation of peptide and protein structures towards desired biological applications.
机译:研究了两种氟和溴BOC保护的苯氧基丙胺化合物,以确定氢键如何影响有机分子的动态行为。采用单晶X射线衍射,建立含氟化合物的折叠骨架的存在。另外,通过XRD检测分子间(常规和非常规)氢键的存在。为了研究溶液中的构象偏好和可用相互作用,进行两种不同浓度的可变温度NMR,在低温下进行2D NMR和量子力学研究。这些研究证实,在溶液中保持了固相中的相互作用。然而,在稀释溶液中的高温下检测和中外非常规氢键(源自氟原子中的非常规氢键之间的竞争。我们的研究表明,氟辅助室温下的分子间交叉偶联。本研究可能引入了一种用于操纵肽和蛋白质结构朝向所需的生物学应用的新工具。

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