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Enantioselective Synthesis and Application to the Allylic Imidate Rearrangement of Amine-Coordinated Palladacycle Catalysts of Cobalt Sandwich Complexes

机译:钴三明治配合物胺配位的Palladacycle催化剂的烯丙基酰亚胺对映体的对映选择性合成及其应用

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摘要

The reaction of (η5-(N,N-dimethylaminomethyl)cyclopentadien-yl)(η4-tetraphenylcyclobutadiene)cobalt with sodium tetrachloropalladate and (R)-N-acetylphenylalanine gave planar chiral palladacycle di-μ-chloridebis[(η5-(Sp)-2-(N,N-dimethylaminomethyl)cyclopentadienyl,1-C,3′-N)(η4-tetraphenylcyclobutadiene)cobalt]dipalladium [(Sp)-Me2-CAP-Cl] in 92 % ee and 64 % yield. Enantiopurity (>98 % ee) was achieved by purification of the monomeric (R)-proline adducts and conversion back to the chloride dimer. Treatment with AgOAc gave (Sp)-Me2-CAP-OAc which was applied to asymmetric transcyclopalladation (up to 78 % ee). The (R)-N-acetylphenylalanine mediated palladation methodology was applicable also to the corresponding N,N-diethyl (82 % ee, 39 % yield) and pyrrolidinyl (>98 % ee, 43 % yield) cobalt sandwich complexes. A combination of 5 mol % of the latter [(Sp)-Pyrr-CAP-Cl] and AgNO3 (3.8 equiv) is a catalyst for the allylic imidate rearrangement of an (E)-N-aryltrifluoroacetimidate (up to 83 % ee), and this catalyst system is also applicable to the rearrangement of a range of (E)-trichloroacetimidates (up to 99 % ee). This asymmetric efficiency combined with the simplicity of catalyst synthesis provides accessible solutions to the generation of non-racemic allylic amine derivatives.
机译:(η 5 -(N,N-二甲基氨基甲基)环戊二烯基)(η 4 -四苯基环丁二烯)钴与四氯钯酸钠和(R)-N-乙酰基苯丙氨酸的反应得到平面手性四环四环二氯化物双[(η 5 -(Sp)-2-(N,N-二甲基氨基甲基)环戊二烯基,1-C,3'-N)(η 4-(四苯基环丁二烯)钴]二钯[(Sp)-Me2-CAP-Cl]的产率为92%ee,产率为64%。通过纯化单体(R)-脯氨酸加合物并将其转化回氯化物二聚体来实现对映体纯度(> 98%ee)。用AgOAc处理得到(Sp)-Me2-CAP-OAc,其被用于不对称的跨环palpalpalation(高达78%ee)。 (R)- N -乙酰苯丙氨酸介导的诊方法也适用于相应的 N N -二乙基(82% ee ,产率为39%)和吡咯烷基(> 98% ee ,产率为43%)钴三明治复合物。后者的[( S p)-Pyrr-CAP-Cl]和AgNO3(3.8当量)的5摩尔%的组合是( E < / em>)- N -芳基三氟乙酰亚氨酸酯(<83> ee ),该催化剂体系也适用于重排( E < / em>)-三氯乙亚氨酸盐(最多99% ee )。这种不对称效率与催化剂合成的简单性相结合,为非外消旋烯丙基胺衍生物的产生提供了可行的解决方案。

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