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Tuning the Guest-Binding Ability of a Helically Folded Capsule by In Situ Modification of the Aromatic Oligoamide Backbone

机译:通过原位修饰芳族低聚酰胺骨架来调节螺旋折叠胶囊的客体结合能力。

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Starting from a previously described aromatic oligoamide helically folded capsule that binds tartaric acid with high affinity and diastereoselectivity, we demonstrate the feasibility of the direct in situ modification of the helix backbone, which results in a conformational change that reduces its affinity for guests by two orders of magnitude. Specifically, ring contraction of the central pyridazine unit into a pyrrole in the full helical sequence was investigated by using electrochemical and chemical processes. The sequence containing the pyrrole was synthesized independently in a convergent manner to ascertain its structure. The conformation of the pyrrolic folded capsule was elucidated in the solid state by X-ray crystallography and in solution by using ~1H and ~(13)C NMR spectroscopy. Solution studies revealed an unanticipated solvent-dependent equilibrium between the anti–anti and syn–syn conformations of the pyrrole ring with respect to its two adjacent pyridine units. Titrations of the pyrrole-containing sequence monitored by ~1H NMR spectroscopy confirmed the expected drop in affinity for tartaric acid and malic acid that arises from the conformation change in the backbone that follows the replacement of the pyridazine by a pyrrole. The reduction of the pyridazine to a pyrrole was characterized by cyclic voltammetry both on the entire sequence and on a shorter precursor. The lower cathodic potential of the precursor made its preparative-scale electroreduction possible. Direct in situ modification of the pyridazine within the entire capsule sequence was achieved chemically by using zinc in acetic acid.
机译:从先前描述的以高亲和力和非对映选择性结合酒石酸的芳香族寡酰胺螺旋折叠胶囊开始,我们证明了螺旋骨架直接原位修饰的可行性,这导致构象变化,使其对宾客的亲和力降低了两个数量级数量级。具体地,通过使用电化学和化学方法研究了中央哒嗪单元以全螺旋序列成吡咯的环收缩。含有吡咯的序列以收敛的方式独立地合成以确定其结构。通过X射线晶体学和在溶液中通过〜1H和〜(13)C NMR光谱法阐明了固态的吡咯折叠胶囊的构型。溶液研究表明,吡咯环相对于其两个相邻的吡啶单元的反-和反-顺式构象之间存在意料之外的溶剂依赖性平衡。通过〜1H NMR光谱监测的含吡咯序列的滴定证实了对酒石酸和苹果酸的预期亲和力下降,这是由吡咯取代哒嗪后主链构象变化引起的。通过循环伏安法在整个序列和较短的前体上表征哒嗪还原为吡咯。前体的较低阴极电位使其制备规模的电还原成为可能。通过在乙酸中使用锌,可以在化学上实现整个胶囊序列中哒嗪的直接原位修饰。

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