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Intramolecular substitutions of secondary and tertiary alcohols with chirality transfer by an iron(III) catalyst

机译:铁(III)催化剂的手性转移在仲醇和叔醇中进行分子内取代

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摘要

Optically pure alcohols are abundant in nature and attractive as feedstock for organic synthesis but challenging for further transformation using atom efficient and sustainable methodologies, particularly when there is a desire to conserve the chirality. Usually, substitution of the OH group of stereogenic alcohols with conservation of chirality requires derivatization as part of a complex, stoichiometric procedure. We herein demonstrate that a simple, inexpensive, and environmentally benign iron(III) catalyst promotes the direct intramolecular substitution of enantiomerically enriched secondary and tertiary alcohols with O-, N-, and S-centered nucleophiles to generate valuable 5-membered, 6-membered and aryl-fused 6-membered heterocyclic compounds with chirality transfer and water as the only byproduct. The power of the methodology is demonstrated in the total synthesis of (+)-lentiginosine from D-glucose where iron-catalysis is used in a key step. Adoption of this methodology will contribute towards the transition to sustainable and bio-based processes in the pharmaceutical and agrochemical industries.
机译:光学纯的醇性质丰富,作为有机合成的原料具有吸引力,但对于使用原子高效且可持续的方法进行进一步转化具有挑战性,尤其是在希望保留手性的情况下。通常,以手性守恒取代立体异构醇的OH基团需要衍生化,这是复杂的化学计量程序的一部分。我们在此证明,简单,廉价且对环境无害的铁(III)催化剂可促进以O,N和S为中心的亲核体对映体富集的仲醇和叔醇的直接分子内取代,从而生成有价值的5元,6-元和芳基稠合的6元杂环化合物,具有手性转移,水是唯一的副产物。该方法的强大能力在D-葡萄糖的全合成(+)-龙胆苷中得到了证明,其中关键步骤采用了铁催化。这种方法的采用将有助于向制药和农用化学工业过渡到可持续和基于生物的过程。

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