首页> 外文期刊>The Journal of Organic Chemistry >Scalable and Phosphine-Free Conversion of Alcohols to Carbon-Heteroatom Bonds through the Blue Light-Promoted Iodination Reaction
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Scalable and Phosphine-Free Conversion of Alcohols to Carbon-Heteroatom Bonds through the Blue Light-Promoted Iodination Reaction

机译:通过蓝光促进的碘化反应可扩展和无膦 - 杂原子键对碳杂原子键转换

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摘要

One of the fundamental and highly valuable transformations in organic chemistry is the nucleophilic substitution of alcohols. Traditionally, these reactions require strategies that employ stoichiometric hazardous reagents and are associated with difficulty in purification of the by-products. To overcome these challenges, here, we report a simple route toward the diverse conversion of alcohols via an S(N)2 pathway, in which blue light-promoted iodination is used to form alkyl iodide intermediates from simple unreactive alcohols. The scope of the process tolerates a range of nucleophiles to construct C-N, C-O, C-S, and C-C bonds. Furthermore, we also demonstrate that this method can be used for the preparation and late-stage functionalization of pharmaceuticals, as highlighted by the syntheses of thiocarlide, butoxycaine, and pramoxine.
机译:有机化学的基本和高度宝贵的转化之一是醇的亲核代替。 传统上,这些反应需要采用化学计量危险试剂的策略,并且难以纯化副产物的难题。 为了克服这些挑战,在这里,我们通过S(n)2途径报告了往往转化醇的多样化途径,其中使用蓝光促进的碘化用于从简单的不反应醇形成烷基碘中间体。 该方法的范围可容忍一系列的亲核试剂,以构建C-N,C-O,C-S和C-C键。 此外,我们还证明该方法可用于药物的制备和晚期阶段官能化,如硫甲酰胺,丁氧基丁基和普氧胺的合成所突出。

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