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首页> 外文期刊>ACS Omega >Minimization of Amounts of Catalyst and Solvent in NHC-Catalyzed Benzoin Reactions of Solid Aldehydes: Mechanistic Consideration of Solid-to-Solid Conversion and Total Synthesis of Isodarparvinol B
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Minimization of Amounts of Catalyst and Solvent in NHC-Catalyzed Benzoin Reactions of Solid Aldehydes: Mechanistic Consideration of Solid-to-Solid Conversion and Total Synthesis of Isodarparvinol B

机译:在固体醛的NHC催化的苯并素反应中最小化催化剂和溶剂的量:机械考虑固体转化的固体转化和Isodarparvinol B的总合成

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Attempts were made to minimize the amounts of catalyst and solvent in the NHC-catalyzed benzoin reactions of solid aldehydes. In some case, solid-to-solid conversions proceeded in the solvent-free NHC-catalyzed benzoin reactions. Even if a mixture of the substrate, N -heterocyclic carbene (NHC) precursor, and inorganic base was initially a powdery solid, the reaction did proceed at reaction temperature lower than the melting points of each compound. The solid mixture partially melted or became a slurry or suspension in the meantime. We call this solid/liquid mixture a semisolid state. The reaction giving an optically active product was faster than that giving a racemic mixture of the same product. Melting-point depression was observed for a series of mixtures of the substrate and product in different substrate/product ratios. Solvent-free solid-to-solid conversions were accelerated by the formation of a semisolid state resulting from the melting-point depression of the solid substrate accompanied by the product formation. In the case of solid substrates with high melting points, melting-point depression was useless, and the addition of a small amount of solvent was needed. The first total synthesis of isodarparvinol B was achieved via the NHC-catalyzed intramolecular benzoin reaction using a small amount of solvent as an additive.
机译:尝试最小化NHC催化的固体醛的NHC催化的苯并素反应中的催化剂和溶剂的量。在某种情况下,在无溶剂的NHC催化的苯并素反应中进行固体逆转转化。即使基材的混合物, N-磷酸环(NHC)前体和无机碱最初是粉末状固体,也使反应在低于每种化合物的熔点的反应温度下进行。与此同时,固体混合物部分熔化或成为浆料或悬浮液。我们称这种固体/液体混合物称为半固态状态。给出光学活性产物的反应速度比同一产品的外消旋混合物更快。对于不同基材/产品比例的基材和产物的一系列混合物,观察到熔点凹陷。通过形成由产物形成的固体基质的熔点凹陷产生的半固态状态,通过形成无溶剂固体转化。在具有高熔点的固体衬底的情况下,熔点抑制无用,并且需要添加少量溶剂。使用少量溶剂作为添加剂,通过NHC催化的分子内苯并反应实现ISOdarparvinolb的第一种总合成。

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