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EMPLOYING A REMOTE CONFORMATIONAL BIAS, INHIBITION OF GAMMA-BUTYROLACTONE FORMATION, AND A SODIUM TEMPLATE TO ENHANCE MACROCYCLIZATION IN CARBENE ADDITION REACTIONS

机译:采用远程构象偏倚,抑制γ-丁内酯形成和钠模板以增强碳原子加成反应中的宏观循环

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摘要

Ring closure via dirhodium(II) catalyzed diazo decomposition of diazoacetates is an efficient method of asymmetric macrocycle formation, affording up to 28-membered rings without the high dilution requirement of many other macrocyclization methods. To overcome reaction pathways that compete with macrocyclization, such as gamma-butyrolactone formation via C-H insertion, and to enhance control of the stereocenters formed in carbene addition reactions, remote conformational bias of a diazoacetate, inhibition of gamma-butyrolactone formation, and template directed macrocycle formation, were each independently investigated. The influence of a remote conformational bias in a diazoacetate on diastereoselectivity in carbene addition reactions was evaluated using diazoacetates prepared from threitol 2,3-diprotected as a 1,4-dioxane (1) or a 1,3-dioxolane. Diazo decomposition of A with chiral dirhodium(II) and copper(I) catalysts afforded diastereoisomer ratios as high as 99:1 and match/mismatch interactions between substrate and catalyst, while diazo decomposition of 1,3-dioxolane derived diazoacetates afforded no greater than 90:10 diastereoselectivity, and no match/mismatch relationship was found when using dirhodium(II) carboxamidate catalysts, though one is believed to exist when using a chiral copper(I)/2. Results indicate that the influence of a remote conformational bias on diastereoselectivity is the dihedral angle from the template.In a separate study, effective inhibition of competitive gamma-butyrolactone formation was accomplished by using a 1,2-benzenedimethanol linker, allowing the formation of up to 28-membered macrocycles via carbene addition to an allyl ether C=C bond with good yields. Catalysts such as Rh2(MEOX)4 and Rh2(DOSP)4, which have been ineffective in macrocycle formation, can catalyze diazo decomposition of these diazoacetates to afford macrocycles in greater than 50% yield. The elimination of gamma-butyrolactone formation allows a greater number of dirhodium(II) catalysts to be used for macrocycle formation.The influence of a sodium ion from NaBPh4 and of copper(I) as a template on diazo decomposition reaction selectivity was evaluated using substrates that link a diazoacetate to an allyl ether through penta(ethylene glycol). Sodium ion inhibits oxonium ylide formation and modifies diastereoselectivity in copper(I) catalyzed reactions to afford cyclopropanes in a ratio of 80:20 (Z:E) versus a 57:43 ratio without the template.
机译:通过重氮(II)催化重氮分解重氮乙酸酯进行的闭环反应是一种有效的不对称大环形成的方法,可提供多达28个成员的环,而无需其他许多大环化方法的高稀释度要求。克服与大环化竞争的反应途径,例如通过CH插入形成γ-丁内酯,并增强对卡宾加成反应中形成的立体中心的控制,重氮乙酸盐的远程构象偏倚,抑制γ-丁内酯形成,以及模板指导的大环化合物形成,分别进行独立调查。使用由作为1,4-二恶烷(1)或1,3-二恶戊环的苏糖醇2,3-二保护制备的重氮乙酸酯评估了重氮乙酸酯中远程构象偏差对卡宾加成反应中非对映选择性的影响。用手性二铑(II)和铜(I)催化剂重氮分解A可得到高达99:1的非对映异构体比率以及底物和催化剂之间的匹配/不匹配相互作用,而1,3-二氧戊环衍生的重氮乙酸盐的重氮分解则不大于尽管使用手性铜(I)/ 2时,据信存在90:10的非对映选择性,但使用氨基甲酸二铵(II)时未发现匹配/不匹配关系。结果表明,远程构象偏差对非对映选择性的影响是与模板的二面角。在另一项研究中,通过使用1,2-苯二甲醇连接基实现了对竞争性γ-丁内酯形成的有效抑制,从而形成了通过将碳烯加成烯丙基醚C = C键可得到28元大环化合物,收率很高。在大环形成中无效的催化剂,例如Rh2(MEOX)4和Rh2(DOSP)4,可以催化这些重氮乙酸酯的重氮分解,以大于50%的产率提供大环。消除了γ-丁内酯的形成,从而允许使用更多的dirhodium(II)催化剂来形成大环化合物。使用底物评估了NaBPh4的钠离子和铜(I)作为模板对重氮分解反应选择性的影响。通过五(乙二醇)将重氮乙酸酯连接至烯丙基醚。钠离子抑制氧鎓叶立德的形成,并改变铜(I)催化反应中的非对映选择性,从而以80:20(Z:E)的比例与没有模板的57:43的比例提供环丙烷。

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    Weathers Thomas M;

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  • 年度 2005
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