首页> 外文期刊>The Journal of Organic Chemistry >Alkylammonium cation complexation into the narrow cavity of dihomooxacalix[4]arene macrocycle
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Alkylammonium cation complexation into the narrow cavity of dihomooxacalix[4]arene macrocycle

机译:烷基铵阳离子络合到二高氧杂lix [4]芳烃大环的狭窄腔中

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How big should a calixarene macrocycle be for endo-cavity complexation to occur or to allow through-the-annulus threading? To answer these questions, a complete study on the complexation of primary and secondary (di)alkylammonium cations by 18-membered p-tert-butyldihomooxacalix[4]arene macroring has been performed in the presence of the "superweak" TFPB counterion. Thus, it was found that this macrocycle is currently the smallest calixarene able to host linear and branched alkylammonium guests inside its aromatic cavity. Molecular mechanics calculations revealed that this recognition event is mainly driven by a H-bonding interaction between the guest ammonium group and the host CH_2OCH_2 bridge. The endo-cavity complexation of chiral s-BuNH_3 ~+ guest results in an asymmetric complex in the NMR time scale. The chirality transfer from guest to host is likely due to a restricted guest motion inside the tight cavity. The complexation study with secondary di-n-alkylammonium·TFPB salts revealed that the 18-membered dihomooxacalix[4]arene macroring cannot give the through-the-annulus threading with them because of its small dimension. However, the macrocycle is able to complex such ions, which can only be accommodated in an hook-like conformation characterized by two unfavorable gauche interactions around the CH _2-NH_2 ~+ bonds. The strain generated by this unfavorable folding is very likely compensated by stronger H-bonds and more favorable CH/π interactions between guest and host.
机译:杯芳烃大环应多大才能发生腔内络合或允许穿环?为了回答这些问题,在“超弱” TFPB抗衡离子存在下,对18元对叔丁基二高氧acalix [4]芳烃大环对伯和仲(di)烷基铵阳离子的络合进行了完整的研究。因此,发现该大环化合物是目前最小的杯芳烃,其能够在其芳族腔中容纳线性和支链的烷基铵客体。分子力学计算表明,这种识别事件主要是由客体铵基团与主体CH_2OCH_2桥之间的氢键相互作用引起的。手性s-BuNH_3〜+客体的腔内络合导致NMR时间尺度上的不对称络合物。从客体到宿主的手性转移可能是由于客体在紧密腔内的运动受到限制。与仲二正烷基铵·TFPB盐的络合研究表明,18元的二氧杂芳基[4]芳烃大环由于尺寸小而无法穿过环。然而,大环能够使这些离子络合,这些离子只能以钩状构象容纳,其特征是围绕CH _2-NH_2〜+键的两个不利的鸟笼相互作用。由这种不利折叠产生的应变很可能被较强的氢键和客体与宿主之间更有利的CH /π相互作用所补偿。

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