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首页> 外文期刊>The Journal of Organic Chemistry >SYNTHESES OF THEASPIRONE AND VITISPIRANE VIA PALLADIUM(II)-CATALYZED OXASPIROCYCLIZATION
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SYNTHESES OF THEASPIRONE AND VITISPIRANE VIA PALLADIUM(II)-CATALYZED OXASPIROCYCLIZATION

机译:通过钯(II)催化的氧旋环化反应合成茶黄酮和紫杉烷

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摘要

Total syntheses of theaspirone (A and B) and vitispirane (A and B) are described. The key step in the syntheses is the palladium(II)-catalyzed intramolecular oxaspirocyclization of diene alcohol 4 to either vitispirane or the allylic alcohol 9. The outcome of the oxaspirocyclization is very much dependent on the solvent employed. In water-acetic acid (4:1) a 1:1 mixture of the diastereomeric alcohols 9A and 9B was exclusively formed. In water with 8 equiv of a strong non-nucleophilic acid, vitispiranes A and B (1:1) were obtained. An alternative procedure to obtain vitispirane with the use of LiCl and K2CO3 is described. In the latter reaction vitispirane B is formed preferentially. This result is explained by an equilibrium between the two possible pi-allyl complexes 5A and 5B, the kinetically favored 5B being transformed into vitispirane 3B before isomerization to 5A occurs. [References: 35]
机译:描述了theaspirone(A和B)和Vitispirane(A和B)的总合成。合成中的关键步骤是钯(II)催化的二烯醇4的分子内氧杂螺环化成维斯匹烷或烯丙醇9。氧杂螺环化的结果在很大程度上取决于所用的溶剂。在水-乙酸(4:1)中,仅形成非对映异构醇9A和9B的1:1混合物。在具有8当量的强非亲核酸的水中,获得了维斯匹烷A和B(1:1)。描述了使用LiCl和K2CO3获得维斯匹烷的另一种方法。在后一反应中,优先生成替斯匹兰B。该结果通过两种可能的π-烯丙基复合物5A和5B之间的平衡来解释,在发生异构化为5A之前,动力学上有利的5B被转化为维替匹烷3B。 [参考:35]

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