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Formation of copper(I)-templated [2]rotaxanes using “click” methodology: influence of the base, the thread and the catalyst

机译:使用“点击”方法形成铜(I)模板的[2]轮烷的形成:碱,线和催化剂的影响

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摘要

Three new copper(I)-assembled [2]rotaxanes incorporating the same macrocycle and different axes containing a bipy, a phen or a terpy have been synthesized thanks to CuAAC reaction for attaching the stoppers. The influence of the nature of the base used for the stoppering reaction was investigated on the formation of the bipy-containing rotaxane. The yield of the [2]rotaxane synthesis was increased when using a phen as a coordinating unit in the thread with [Cu(CH3CN)4](PF6) as catalyst. The strong influence of the nature of the catalyst was clearly evidenced for the formation of the terpy rotaxane, increasing the yield of the stoppering reaction from 0 to 95% by just substituting the Cu(I) catalyst. Finally, the best conditions found for our systems are the use of Na2CO3 as a base and Cu(tren′)Br as a catalyst.
机译:由于CuAAC反应连接了塞子,已经合成了三种新的铜(I)组装的[2]轮烷,它们结合了相同的大环和不同的轴,分别包含Bipy,phen或terpy。研究了用于终止反应的碱的性质对含联吡啶的轮烷的形成的影响。当使用苯基作为[Cu(CH 3 CN CN] 4 ](PF 的线程中的配位单元时,[2]轮烷的合成收率增加> 6 )作为催化剂。叔丁基轮烷的形成清楚地证明了催化剂性质的强烈影响,仅通过取代Cu(I)催化剂,塞子反应的收率就从0提高到95%。最后,为我们的系统找到的最佳条件是使用Na 2 CO 3 作为碱,使用Cu(tren')Br作为催化剂。

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