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β-酮酯的催化不对称迈克尔反应:连接型联萘酚中连接原子的影响

Catalytic asymmetric Michael reaction of beta-keto esters: effects of the linker heteroatom in linked-BINOL.

作者信息

Majima Keisuke, Takita Ryo, Okada Akihiro, Ohshima Takashi, Shibasaki Masakatsu

机构信息

Graduate School of Pharmaceutical Sciences, The University of Tokyo, Hongo, Bunkyo-ku, Tokyo 113-0033, Japan.

出版信息

J Am Chem Soc. 2003 Dec 24;125(51):15837-45. doi: 10.1021/ja037635t.

Abstract

We describe the development of a general catalytic asymmetric Michael reaction of acyclic beta-keto esters to cyclic enones, in which asymmetric induction occurs at the beta-position of the acceptors. Among the various asymmetric catalyst systems examined, the newly developed La-NR-linked-BINOL complexes (R = H or Me) afforded the best results in terms of reactivity and selectivity. In general, the NMe ligand 2 was suitable for the combination of small enones and small beta-keto esters, and the NH ligand 1 was suitable for bulkier substrates (steric tuning of the catalyst). Using the La-NMe-linked-BINOL complex, the Michael reaction of methyl acetoacetate (8a) to 2-cyclohexen-1-one (7b) gave the corresponding Michael adduct 9ba in 82% yield and 92% ee. The linker heteroatom in linked-BINOL is crucial for achieving high reactivity and selectivity in the Michael reaction of beta-keto esters. The amine moiety in the NR-linked-BINOL can also tune the Lewis acidity of the central metal (electronic tuning of the catalyst), which was supported by density functional studies and experimental results. Another advantage of the NR-linked-BINOL ligand as compared with O-linked-BINOL is the ease of modifying a substituent on the amine moiety, making it possible to synthesize a variety of NR-linked-BINOL ligands for further improvement or development of new asymmetric catalyses by introducing additional functionality on the linker with the amine moiety. The efficiency of the present asymmetric catalysis was demonstrated by the synthesis of the key intermediate of (-)-tubifolidine and (-)-19,20-dihydroakuammicine in only five steps compared to the nine steps required by the original process from the Michael product of malonate. This strategy is much more atom economical. On the basis of the results of mechanistic studies, we propose that a beta-keto ester serves as a ligand as well as a substrate and at least one beta-keto ester should be included in the active catalyst complex. Further improvement of the reaction by maintaining an appropriate ratio of the La-NMe-linked-BINOL complex and beta-keto esters is also described.

摘要

我们描述了一种无环β-酮酯与环状烯酮的通用催化不对称迈克尔反应的发展,其中不对称诱导发生在受体的β-位。在所研究的各种不对称催化剂体系中,新开发的镧-NR连接的联萘酚配合物(R = H或Me)在反应性和选择性方面取得了最佳结果。一般来说,NMe配体2适用于小分子烯酮和小分子β-酮酯的组合,而NH配体1适用于体积更大的底物(催化剂的空间调节)。使用镧-NMe连接的联萘酚配合物,乙酰乙酸甲酯(8a)与2-环己烯-1-酮(7b)的迈克尔反应以82%的产率和92%的对映体过量得到相应的迈克尔加成物9ba。连接的联萘酚中的连接杂原子对于在β-酮酯的迈克尔反应中实现高反应性和选择性至关重要。NR连接的联萘酚中的胺部分也可以调节中心金属的路易斯酸性(催化剂的电子调节),这得到了密度泛函研究和实验结果的支持。与O连接的联萘酚相比,NR连接的联萘酚配体的另一个优点是易于修饰胺部分上的取代基,使得通过在带有胺部分的连接基上引入额外的官能团来合成各种NR连接的联萘酚配体以进一步改进或开发新的不对称催化成为可能。通过仅五步合成(-)-tubifolidine和(-)-19,20-二氢阿库明碱的关键中间体,证明了当前不对称催化的效率,而从丙二酸酯的迈克尔产物开始的原始过程需要九步。这种策略更具原子经济性。基于机理研究的结果,我们提出β-酮酯既作为配体又作为底物,并且活性催化剂配合物中应至少包含一个β-酮酯。还描述了通过保持镧-NMe连接的联萘酚配合物与β-酮酯的适当比例来进一步改进反应。

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