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Chiral, sequence-definable foldamer-derived macrocycles.


ABSTRACT: Nature's oligomeric macromolecules have been a long-standing source of inspiration for chemists producing foldamers. Natural systems are frequently conformationally stabilised by macrocyclisation, yet this approach has been rarely adopted in the field of foldamer chemistry. Here we present a new class of chiral cyclic trimers and tetramers formed by macrocyclisation of open-chain foldamer precursors. Symmetrical products are obtained via a [2 + 2] self-assembly approach, while full sequence control is demonstrated through linear synthesis and cyclisation of an unsymmetrical trimer. Structural characterisation is achieved through a combined X-ray and DFT approach, which indicates the tetramers adopt a near-planar conformation, while the trimers adopt a shallow bowl-like shape. Finally, a proof-of-concept experiment is conducted to demonstrate the macrocycles' capacity for cation binding.

SUBMITTER: Warnock TMC 

PROVIDER: S-EPMC8654020 | biostudies-literature | 2021 Dec

REPOSITORIES: biostudies-literature

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Chiral, sequence-definable foldamer-derived macrocycles.

Warnock Toyah M C TMC   Rajkumar Sundaram S   Fitzpatrick Matthew P MP   Serpell Christopher J CJ   Dingwall Paul P   Knipe Peter C PC  

Chemical science 20211110 47


Nature's oligomeric macromolecules have been a long-standing source of inspiration for chemists producing foldamers. Natural systems are frequently conformationally stabilised by macrocyclisation, yet this approach has been rarely adopted in the field of foldamer chemistry. Here we present a new class of chiral cyclic trimers and tetramers formed by macrocyclisation of open-chain foldamer precursors. Symmetrical products are obtained <i>via</i> a [2 + 2] self-assembly approach, while full sequen  ...[more]

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