Hirashima Shin-Ichi
Tokyo University of Pharmacy and Life Sciences.
Yakugaku Zasshi. 2021;141(10):1137-1145. doi: 10.1248/yakushi.21-00130.
Organocatalysts, which are less toxic than metal catalysis, as well as inexpensive, environmentally benign, and stable against moisture and oxygen compared to metal-based catalysts, have received considerable attention for being efficient and clean catalysts. With respect to green chemistry, the development of organocatalysis is a significant research subject for a sustainable society. This article reviews studies on the development of novel organocatalysts and the reactions achieved from using them. Focusing on the push-pull ethylene moiety, in which two electron-withdrawing groups (EWGs) were introduced, we proposed that the vinylogous amide proton (N-H) will lead to the design of organocatalysts. We have developed the diaminomethylenemalononitrile (DMM) organocatalysts, which are push-pull ethylenes having two cyano groups as EWGs, and proved that they are effective for highly stereoselective hydrophosphonylation with aldehydes. The catalytic ability of the DMM organocatalyst was demonstrated in the development of the first asymmetric hydrophosphonylation of ketones using organocatalysts. The DMM organocatalyst can be applied to the selective 1,4-addition asymmetric hydrophosphonylation of enones. In addition, we designed and synthesized novel organocatalysts bearing squaramide-sulfonamide motif as multiple hydrogen bond donors. Squaramide-sulfonamide organocatalysts efficiently catalyzed the asymmetric direct vinylogous aldol reactions of furan-2(5H)-one with aldehydes. Successively, we achieved the synthesis of γ,γ-disubstituted-δ-hydroxy-γ-butenolide via asymmetric direct vinylogous aldol reaction of furanone derivatives using the squaramide-sulfonamide organocatalysts.
有机催化剂的毒性低于金属催化剂,而且与金属基催化剂相比价格低廉、环境友好且对水分和氧气稳定,作为高效且清洁的催化剂受到了广泛关注。就绿色化学而言,有机催化的发展是可持续社会的一个重要研究课题。本文综述了新型有机催化剂的开发研究以及使用它们实现的反应。聚焦于引入了两个吸电子基团(EWG)的推挽式乙烯基部分,我们提出烯醇酰胺质子(N-H)将引领有机催化剂的设计。我们开发了二氨基亚甲基丙二腈(DMM)有机催化剂,其为具有两个作为吸电子基团的氰基的推挽式乙烯,并且证明它们对于与醛的高度立体选择性氢膦酰化反应有效。DMM有机催化剂的催化能力在首次使用有机催化剂进行的酮的不对称氢膦酰化反应的开发中得到了证明。DMM有机催化剂可应用于烯酮的选择性1,4-加成不对称氢膦酰化反应。此外,我们设计并合成了带有方酰胺-磺酰胺基序作为多个氢键供体的新型有机催化剂。方酰胺-磺酰胺有机催化剂有效地催化了呋喃-2(5H)-酮与醛的不对称直接烯醇醛缩合反应。随后,我们使用方酰胺-磺酰胺有机催化剂通过呋喃酮衍生物进行不对称直接烯醇醛缩合反应实现了γ,γ-二取代-δ-羟基-γ-丁烯内酯的合成。