State Key Laboratory of Organometallic Chemistry, Center for Excellence in Molecular Synthesis, Shanghai Institute of Organic Chemistry , Chinese Academy of Sciences , 345 Lingling Road , Shanghai 200032 , China.
University of Chinese Academy of Sciences , Beijing 100049 , China.
J Am Chem Soc. 2019 Jun 5;141(22):8981-8988. doi: 10.1021/jacs.9b02920. Epub 2019 May 23.
An Ir/spiro[4,4]-1,6-nonadiene-based phosphine-oxazoline ligand (SpinPHOX) complex-catalyzed double asymmetric hydrogenation of 3,6-dialkylidene-1,4-dimethylpiperazine-2,5-diones has been developed, providing efficient and practical access to a wide variety of chiral 3,6-disubstituted-2,5-diketopiperazines in high yields with exclusive cis-diastereo- and excellent enantioselectivities (>99% de, up to 98% ee). The synthetic utilities of the protocol have been demonstrated in a gram scale synthesis of 6a and efficient construction of chiral products 8, 14, and 17 as well as a 2-butenyl-bridged bicyclic diketopiperazine 10 and hydroxydiketopiperazine 11. With an analogous achiral Ir catalyst, the hydrogenation of enantiopure monohydrogenated intermediate 7a gave cis-6a as the only product, indicating that the second-step hydrogenation of the titled transformation is a chiral substrate controlled process. The reaction profile study for asymmetric hydrogenation (AH) of 5a revealed that the concentration of the monohydrogenation intermediate 7a remained at a low level (<8%) during the course of hydrogenation. The hydrogenation of 5a to 6a proceeded significantly faster than that of its half-hydrogenated intermediate ( S)-7a, indicating that the titled reaction involves primarily a processive mechanism, in which a single catalyst molecule performs consecutive hydrogenation of the two C═C double bonds in substrate 5a without dissociation of the partially reduced 7a. The present protocol represents a rare example of asymmetric catalytic consecutive hydrogenation of heterocycles and provides an alternative way for efficient construction of cyclic dipeptides.
基于 Ir/spiro[4,4]-1,6-壬二烯的膦-噁唑啉配体(SpinPHOX)催化的 3,6-二亚烷基-1,4-二甲基哌嗪-2,5-二酮的双不对称氢化反应已经被开发出来,该方法高效、实用,以高收率和对映选择性(>99% de,最高可达 98% ee)得到了广泛的手性 3,6-二取代-2,5-二酮哌嗪产物。该方案的合成实用性已通过克级合成 6a 以及高效构建手性产物 8、14 和 17 以及桥连双环二酮哌嗪 10 和羟二酮哌嗪 11 得到了证明。使用类似的非手性 Ir 催化剂,对映纯的单氢化中间体 7a 的氢化反应仅得到顺式-6a,这表明该标题转化的第二步氢化是手性底物控制的过程。不对称氢化(AH)反应的反应轮廓研究表明,在氢化过程中单氢化中间体 7a 的浓度保持在低水平(<8%)。5a 到 6a 的氢化反应速度明显快于其半氢化中间体(S)-7a 的氢化反应速度,这表明该反应主要涉及连续机制,其中单个催化剂分子在不分离部分还原的 7a 的情况下连续氢化底物 5a 中的两个 C═C 双键。本方案代表了杂环不对称催化连续氢化的罕见例子,并为高效构建环状二肽提供了另一种方法。