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一种用于合成机械平面手性轮烷的手性锁定辅助策略。

A chiral interlocking auxiliary strategy for the synthesis of mechanically planar chiral rotaxanes.

机构信息

Chemistry, University of Southampton, Southampton, UK.

出版信息

Nat Chem. 2022 Feb;14(2):179-187. doi: 10.1038/s41557-021-00825-9. Epub 2021 Nov 29.

Abstract

Rotaxanes can display molecular chirality solely due to the mechanical bond between the axle and encircling macrocycle without the presence of covalent stereogenic units. However, the synthesis of such molecules remains challenging. We have discovered a combination of reaction partners that function as a chiral interlocking auxiliary to both orientate a macrocycle and, effectively, load it onto a new axle. Here we use these substrates to demonstrate the potential of a chiral interlocking auxiliary strategy for the synthesis of mechanically planar chiral rotaxanes by producing a range of examples with high enantiopurity (93-99% e.e.), including so-called 'impossible' rotaxanes whose axles lack any functional groups that would allow their direct synthesis by other means. Intriguingly, by varying the order of bond-forming steps, we can effectively choose which end of an axle the macrocycle is loaded onto, enabling the synthesis of both hands of a single target using the same reactions and building blocks.

摘要

轮烷可以仅由于轴和环绕的大环之间的机械键而显示分子手性,而不存在共价手性单元。然而,这种分子的合成仍然具有挑战性。我们已经发现了一系列反应伙伴,它们作为手性互锁辅助物,既可以定向大环,又可以有效地将其加载到新轴上。在这里,我们使用这些底物来展示手性互锁辅助策略在合成机械平面手性轮烷方面的潜力,通过生成一系列具有高对映纯度(93-99%ee)的实例,包括所谓的“不可能”轮烷,其轴缺乏任何官能团,这些官能团不允许通过其他方式直接合成。有趣的是,通过改变键形成步骤的顺序,我们可以有效地选择大环加载到轴的哪一端,从而使用相同的反应和构建块来合成单个目标的两个手性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/77e9/7612332/2b98ceaa5de3/EMS135558-f001.jpg

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