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Ring-Expansion Reactions in the Synthesis of Macrocycles and Medium-Sized Rings

机译:宏型克服和中尺寸环合成中的环膨胀反应

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摘要

Functionalised macrocycles and medium-sized rings have applications in a number of scientific fields, ranging from medicinal chemistry and supramolecular chemistry, to catalysis and nanotechnology. However, their value in these areas can be undermined by a simple, but important limitation: large ring systems are very often difficult to make. Traditional end-to-end cyclisation reactions of long linear precursors are typically unpredictable and impractical processes, mainly due to unfavourable enthalpic and entropic factors. Most published methods to make large rings focus on minimising the damage inflicted by performing the difficult cyclisation step; in contrast, ring-expansion reactions enable it to be avoided altogether. In this Review article, it is highlighted how "growing" rings from existing cyclic systems via ring expansion can expedite the efficient, practical and scalable synthesis of macrocycles and medium-sized rings.
机译:功能化的宏ycles和中尺寸的环具有许多科学领域的应用,从药用化学和超分子化学,催化和纳米技术。 然而,它们在这些地区的价值可以通过简单但重要的限制来破坏:大环系统通常难以制造。 长线性前体的传统端到端环化反应通常是不可预测的和不切实际的过程,主要是由于不利的焓和熵因子。 大多数公开的方法,使大戒指侧重于最小化通过执行困难的循环步骤造成的损害; 相比之下,环形膨胀反应使其能够完全避免。 在本综述文章中,突出显示通过环形扩展的现有循环系统的“越来越”的环如何加快宏蜂鸣和中型环的高效,实用和可扩展的合成。

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