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Importance of weak hydrogen bonds in the formation of cholamide inclusion crystals with aromatic guests

机译:弱氢键在形成带有芳族客体的胆酰胺包合物晶体中的重要性

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Steroidal cholamide (CAM) has been found to form inclusion crystals with 23 aromatic compounds in 1:1 and 2:1 host-to-guest molar ratios. The 1:1 crystals have guest-dependent host frameworks, termed beta-trans-type, where weak hydrogen bonds such as N-H center dot center dot center dot pi, C-H center dot center dot center dot pi, and C-H center dot center dot center dot O play a key role in linking the host and guest molecules. The steroidal side-chains involving methyl, methylene, and amide groups serve as the hydrogen bond donors, and aromatic guest molecules serve as the acceptors. Three kinds of such weak hydrogen bonds are visualized by the Hirshfeld surfaces of the guest molecules. Comparisons of the inclusion crystals of CAM and cholic acid (CA) with the same guests clarify a profound effect of the weak hydrogen bonds. In the case of the 1:1 crystals, the N-H center dot center dot center dot pi hydrogen bonds explain the fact that CAM always employs the beta-trans-type framework, while CA employs either an alpha-gauche- or beta-trans-type framework. On the other hand, the 2:1 crystals, termed DCA-type, have only C-H center dot center dot center dot pi hydrogen bonds. The guest-dependent isomerization of these frameworks is examined in terms of the weak hydrogen bonds as well as compatibilities in size and shape.
机译:现已发现甾体胆甾酰胺(CAM)与23种芳香族化合物形成主体与客体的摩尔比为1:1的夹杂物晶体。 1:1晶体具有依赖于宾客的宿主骨架,称为β-反型,其中弱氢键(例如NH中心点中心点中心点pi,CH中心点中心点中心点pi和CH中心点中心点pi)点O在连接主体分子和来宾分子中起关键作用。涉及甲基,亚甲基和酰胺基的甾体侧链充当氢键供体,芳香客体分子充当受体。客体分子的Hirshfeld表面可以看到三种这样的弱氢键。比较具有相同客体的CAM和胆酸(CA)的夹杂物晶体,阐明了弱氢键的深远影响。在1:1晶体的情况下,NH中心点中心点中心点pi氢键解释了CAM始终采用beta-trans-type框架,而CA采用alpha-gauche-或beta-trans-类型框架。另一方面,称为DCA型的2∶1晶体仅具有C-H中心点中心点中心点pi氢键。根据弱氢键以及大小和形状的相容性,研究了这些骨架的客体依赖性异构化。

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