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A Focus on Triazolium as a Multipurpose Molecular Station for pH-Sensitive Interlocked Crown-Ether-Based Molecular Machines

机译:对三唑鎓作为pH敏感的互锁冠醚基分子机器的多功能分子站的关注

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摘要

The control of motion of one element with respect to others in an interlocked architecture allows for different co-conformational states of a molecule. This can result in variations of physical or chemical properties. The increase of knowledge in the field of molecular interactions led to the design, the synthesis, and the study of various systems of molecular machinery in a wide range of interlocked architectures. In this field, the discovery of new molecular stations for macrocycles is an attractive way to conceive original molecular machines. In the very recent past, the triazolium moiety proved to interact with crown ethers in interlocked molecules, so that it could be used as an ideal molecular station. It also served as a molecular barrier in order to lock interlaced structures or to compartmentalize interlocked molecular machines. This review describes the recently reported examples of pH-sensitive triazolium-containing molecular machines and their peculiar features.
机译:在互锁架构中,一个元素相对于另一个元素的运动控制允许分子具有不同的共构象态。这可能导致物理或化学性质的变化。分子相互作用领域知识的增长导致了在广泛的互锁结构中设计,合成和研究各种分子机械系统。在这一领域,发现大环的新分子站是构思原始分子机器的一种有吸引力的方法。在最近的过去,三唑鎓部分被证明与互锁分子中的冠醚相互作用,因此可以用作理想的分子站。它也充当分子屏障,以锁定交错的结构或分隔互锁的分子机器。这篇评论描述了最近报道的pH敏感的含三唑鎓分子机器的示例及其特殊功能。

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