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N-benzyltriazolium as both molecular station and barrier in [2]rotaxane molecular machines

机译:N-苄基三唑鎓在[2]轮烷分子机器中既是分子站又是屏障

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A two-station [2]rotaxane, consisting of a dibenzo-24-crown-8 macrocycle (DB24C8) that surrounds a molecular axle containing an anilinium and a monosubstituted pyridinium amide molecular stations, has been synthesized via alkyne-azide "click chemistry". The subsequent N-benzylation of the triazole moiety, which is located in the middle of the threaded axle, was then envisaged. In addition to affording a third molecular station (i.e., a triazolium station) for the DB24C8, it was found that the benzyl moiety behaves as a kinetic molecular barrier that prevents the DB24C8 from shuttling along the molecular encircled axle from one extremity to the other. Depending on where the DB24C8 is initially located, the N-benzylation of the triazole allows trapping of the DB24C8 on either the "left" or the "right" side of the thread with respect to the triazolium station. The presence of the benzyl barrier thus affords two different three-station [2]rotaxane molecular machines, in which some of co-conformational states remain unbalanced and not at the equilibrium.
机译:通过炔-叠氮化物“点击化学”合成了一个由二苯并-24-冠-8大环(DB24C8)组成的两站式[2]轮烷,该大环围绕着包含苯胺的分子轴和一个单取代的吡啶鎓酰胺分子站。 。然后设想了位于螺纹轴中间的三唑部分随后的N-苄基化。除了为DB24C8提供第三个分子站(即三唑鎓站)外,还发现苄基部分充当了动力学分子屏障,可阻止DB24C8沿着分子环绕的轴从一个末端向另一个末端穿梭。取决于DB24C8最初所在的位置,三唑的N-苄基化作用使DB24C8相对于三唑鎓位置被捕获在螺纹的“左”侧或“右”侧。因此,苄基屏障的存在提供了两个不同的三工位[2]轮烷分子机器,其中一些共构象态保持不平衡而不是处于平衡状态。

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