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首页> 外文期刊>The Journal of Organic Chemistry >Sequential O- and N-acylation protocol for high-yield preparation and modification of rotaxanes: Synthesis, functionalization, structure, and intercomponent interaction of rotaxanes
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Sequential O- and N-acylation protocol for high-yield preparation and modification of rotaxanes: Synthesis, functionalization, structure, and intercomponent interaction of rotaxanes

机译:轮流烷的高产率制备和修饰的顺序O-和N-酰化方案:轮烷的合成,功能化,结构和组分间相互作用

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摘要

A pseudorotaxane consisting of a 24-membered crown ether and secondary ammonium salt with the hydroxy group at the terminus was quantitatively acylated by bulky acid anhydride in the presence of tributylphosphane as catalyst to afford the corresponding rotaxane in high yield. Large-scale synthesis without chromatographic separation was easily achieved. The ammonium group in the resulting rotaxane was quantitatively acylated with excess electrophile in the presence of excess trialkylamine. Various N-functionalized rotaxanes were prepared by this sequential double-acylation protocol. H-1 NMR spectra and X-ray crystallographic analyses of the rotaxanes showed that the crown ether component was captured on the ammonium group in ammonium-type rotaxane by strong hydrogen-bonding intercomponent interaction. The conformation around the ammonium group was fixed by the hydrogen-bonding interaction. Meanwhile, the conformation of the amide-type rotaxane was determined by the weak CH/pi interaction between the methylene group in crown ether and the benzene ring of the axle component. The N-acylation of ammonium-type rotaxane is useful for the preparation of both functionalized rotaxanes and weak intercomponent interaction-based rotaxanes.
机译:在三丁基膦作为催化剂的存在下,由庞大的酸酐将由24元冠醚和在末端带有羟基的仲铵盐组成的拟轮烷定量酰化,从而以高收率得到相应的轮烷。无需色谱分离即可轻松实现大规模合成。在过量的三烷基胺存在下,用过量的亲电子试剂将所得轮烷中的铵基团定量酰化。通过该顺序的双酰化方案制备了各种N-官能化的轮烷。轮烷的H-1 NMR光谱和X射线晶体学分析表明,冠型醚组分通过强的氢键键合相互作用而被捕获在铵型轮烷中的铵基上。铵基周围的构象通过氢键相互作用而固定。同时,酰胺型轮烷的构象由冠醚中的亚甲基与车轴组件的苯环之间的弱CH / pi相互作用决定。铵型轮烷的N-酰化可用于制备功能化的轮烷和弱的基于组分间相互作用的轮烷。

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