4.8 Article

Programmed synthesis of Hepta-Differentiated β-Cyclodextrin: 1 out of 117655 Arrangements

Journal

ANGEWANDTE CHEMIE-INTERNATIONAL EDITION
Volume 60, Issue 21, Pages 12090-12096

Publisher

WILEY-V C H VERLAG GMBH
DOI: 10.1002/anie.202102182

Keywords

concave molecules; cyclodextrins; DIBAL-H; site-selectivity

Funding

  1. LabEx MiChem part of French state funds by the ANR within the Investissements d'Avenir programme [ANR-11-IDEX-0004-02]
  2. China Scholarship Council

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The discovery of a new orienting group, thioacetate, in cyclodextrin poly-functionalization using DIBAL-H promoted debenzylation has enabled the synthesis of a precisely hepta-hetero-functionalized beta-cyclodextrin, showcasing the versatility of this oriented hetero-functionalization strategy for new practical applications.
Cyclodextrin poly-functionalization has fueled progress in their use in multiple applications such as enzyme mimicry, but also in the polymer sciences, luminescence, as sensors or for biomedical applications. However, regioselective access to a given pattern of functions on beta-cyclodextrin is still very limited. We uncover a new orienting group, the thioacetate, that expands the toolbox available for cyclodextrin poly-hetero-functionalization using diisobutylaluminum hydride (DIBAL-H) promoted debenzylation. The usefulness of this group is illustrated in the first synthesis of a precisely hepta-hetero-functionalized beta-cyclodextrin. By way of comparison, a random hepta-functionalization would give 117655 different molecules. This synthesis is not simply the vain quest for the Holy Grail of CD hetero-functionalization, but it illustrates the versatility of the DIBAL-H oriented hetero-functionalization strategy, opening the way to a multitude of useful functionalization patterns for new practical applications.

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