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首页> 外文期刊>European journal of organic chemistry >Pseudorotaxanes and Rotaxanes Incorporating Cycloheptatrienyl Stations-Synthesis and Co-Conformation
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Pseudorotaxanes and Rotaxanes Incorporating Cycloheptatrienyl Stations-Synthesis and Co-Conformation

机译:伪轮烷和轮烷结合环庚三烯基站-合成和共构象。

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Novel [2]rotaxanes containing the tetracationic cyclophane cyclobis(paraquat-4,4'-biphenylene), linked mechanically to a dumbbell-shaped molecular thread incorporating a pair of diaryl cycloheptatriene units, have been synthesised in moderate yields of up to 35% by the acylative endcapping method, with the use of either bulky acyl chlorieds or isocyanates. The pseudorotaxanes formed by the threading of the electron-rich molecular threads through the tetracationic ring were characterised by ~1H NMR and UV/Vis spectroscopy. The nonplanar, boat-shaped cycloheptatriene rings do not hamper the threading process. According to the ~1H NMR spectra, the tetracationic ring undergoes a fast shuttling process between the two cycloheptatriene stations in the rotaxanes. The unexpected signal dispersion of the cyclophane proton resonances is attributable to the existence of two diastereomeric rotaxanes. It was shown that interaction between the recognition sites is strongly influenced by the substitution pattern on the seven-membered ring; the interaction between the electron-deficient ring and a 1,3-diaryl-2,4,6-cycloheptatriene unit is much stronger than that with the regioisomeric 1,4-disubstituted pendant moiety.
机译:机械合成与包含一对二芳基环庚三烯单元的哑铃型分子线机械连接的新型四环烷环双(百草枯-4,4'-联苯)的[2]轮烷,合成产率高达35%,酰基封端法,使用大体积的酰基氯或异氰酸酯。通过〜1 H NMR和UV / Vis光谱对由富电子分子的线穿过四阳离子环形成的假轮烷进行表征。非平面,船形的环庚三烯环不会妨碍穿线过程。根据〜1H NMR光谱,四阳离子环在轮烷中的两个环庚三烯站之间经历快速穿梭过程。环烷质子共振的意外信号分散归因于两种非对映异构轮烷的存在。结果表明,识别位点之间的相互作用受到七元环上取代模式的强烈影响。缺电子环与1,3-二芳基-2,4,6-环庚三烯单元之间的相互作用比与区域异构的1,4-二取代侧基部分的相互作用强得多。

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