Department of Chemistry, University of Manchester, Oxford Road, Manchester M13 9PL, United Kingdom.
J Am Chem Soc. 2022 Aug 31;144(34):15838-15844. doi: 10.1021/jacs.2c06807. Epub 2022 Aug 18.
We report a new class of synthetic molecular pumps that use a stepwise information ratchet mechanism to achieve the kinetic gating required to sequester their macrocyclic substrates from bulk solution. Threading occurs as a result of active template reactions between the pump terminus amine and an acyl electrophile, whereby the bond-forming reaction is accelerated through the cavity of a crown ether. Carboxylation of the resulting amide results in displacement of the ring to the collection region of the thread. Conversion of the carbamate to a phenolic ester provides an intermediate rotaxane suitable for further pumping cycles. In this way rings can be ratcheted onto a thread from one or both ends of appropriately designed molecular pumps. Each pumping cycle results in one additional ring being added to the thread per terminus acyl group. The absence of pseudorotaxane states ensures that no dethreading of intermediates occurs during the pump operation. This facilitates the loading of different macrocycles in any chosen sequence, illustrated by the pump-mediated synthesis of a [4]rotaxane containing three different macrocycles as a single sequence isomer. A [5]rotaxane synthesized using a dual-opening transamidation pump was structurally characterized by single-crystal X-ray diffraction, revealing a series of stabilizing CH···O interactions between the crown ethers and the polyethylene glycol catchment region of the thread.
我们报告了一类新的合成分子泵,它们使用逐步信息棘轮机制来实现将其大环底物从本体溶液中隔离所需的动力学门控。由于泵末端胺和酰基亲电试剂之间的主动模板反应,穿线发生,其中成键反应通过冠醚的空腔加速。酰胺的羧化导致环取代到线程的收集区域。碳酸酯转化为酚酯提供了适合进一步泵送循环的中间轮烷。以这种方式,环可以从适当设计的分子泵的一个或两个末端以棘轮方式连接到线程上。每个泵送循环都会导致每个末端酰基基团在线上增加一个额外的环。伪轮烷状态的不存在确保了在泵操作过程中没有中间体脱螺纹。这便于以任何选定的顺序加载不同的大环,通过泵介导的合成来证明,其中包含三个不同大环的[4]轮烷作为单个序列异构体。使用双开口转酰胺化泵合成的[5]轮烷通过单晶 X 射线衍射进行了结构表征,揭示了冠醚和线程的聚乙二醇收集区域之间的一系列稳定的 CH···O 相互作用。