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首页> 外文期刊>Angewandte Chemie >Switchable Reconfiguration of an Interlocked DNA Olympiadane Nanostructure
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Switchable Reconfiguration of an Interlocked DNA Olympiadane Nanostructure

机译:互锁的DNA奥氮烷纳米结构的可切换重新配置。

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摘要

Interlocked DNA rings (catenanes) are interesting reconfigurable nanostructures. The synthesis of catenanes with more than two rings is, however, hampered, owing to low yields of these systems. We report a new method for the synthesis of catenanes with a controlled number of rings in satisfactory yields. Our approach is exemplified by the synthesis of a five-ring DNA catenane that exists in four different configurations. By the use of nucleic acids as "fuels" and "antifuels", the cyclic reconfiguration of the system across four states is demonstrated. One of the states, olympiadane, corresponds to the symbol of the Olympic Games. The five-ring catenane was implemented as a mechanical scaffold for the reconfiguration of Au NPs. The advantages of DNA catenanes over supra-molecular catenanes include the possibility of generating highly populated defined states and the feasibility of tethering nanoobjects to the catenanes, which act as a mechanical scaffold to reconfigure the nanoobjects.
机译:互锁的DNA环(儿茶素)是有趣的可重构纳米结构。然而,由于这些系统的低收率,阻碍了具有两个以上环的连环烃的合成。我们报告了一种新的方法,以令人满意的产率合成具有可控环数的链烯。我们的方法以存在于四种不同构型的五环DNA链烷的合成为例。通过使用核酸作为“燃料”和“反燃料”,证明了系统在四种状态下的循环重配置。其中一个州是奥林匹克奥林匹克运动会的象征。五环链烷被用作机械支架,用于金纳米颗粒的重新配置。 DNA链烯相对于超分子链烯的优势包括:产生高密度定义状态的可能性,以及将纳米物体束缚于链烯的可能性,后者可作为机械支架来重新配置纳米物体。

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