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可回收磷-迈克尔加成反应的 4-,-二甲氨基吡啶甲酸盐或全氟长链吡啶盐催化剂:两种可重复使用的碱催化剂。

Recoverable Phospha-Michael Additions Catalyzed by a 4-,-Dimethylaminopyridinium Saccharinate Salt or a Fluorous Long-Chained Pyridine: Two Types of Reusable Base Catalysts.

机构信息

Institute of Organic and Polymeric Materials, National Taipei University of Technology, Taipei 106, Taiwan.

Department of Pediatrics, Linkou Medical Center, Chang Gung Memorial Hospital, Taoyuan 333, Taiwan.

出版信息

Molecules. 2021 Feb 22;26(4):1159. doi: 10.3390/molecules26041159.

Abstract

Phospha-Michael addition, which is the addition reaction of a phosphorus-based nucleophile to an acceptor-substituted unsaturated bond, certainly represents one of the most versatile and powerful tools for the formation of P-C bonds, since many different electrophiles and P nucleophiles can be combined with each other. This offers the possibility to access many diversely functionalized products. In this work, two kinds of basic pyridine-based organo-catalysts were used to efficiently catalyze phospha-Michael addition reactions, the 4-,-dimethylaminopyridinium saccharinate (DMAP·Hsac) salt and a fluorous long-chained pyridine (4--CHOCH-py, where = CF). These catalysts have been synthesized and characterized by Lu's group. The phospha-Michael addition of diisopropyl, dimethyl or triethyl phosphites to α, β-unsaturated malonates in the presence of those catalysts showed very good reactivity with high yield at 80-100 °C in 1-4.5 h with high catalytic recovery and reusability. With regard to significant catalytic recovery, sometimes more than eight cycles were observed for DMAP·Hsac adduct by using non-polar solvents (e.g., ether) to precipitate out the catalyst. In the case of the fluorous long-chained pyridine, the thermomorphic method was used to efficiently recover the catalyst for eight cycles in all the reactions. Thus, the easy separation of the catalysts from the products revealed the outstanding efficacy of our systems. To our knowledge, these are good examples of the application of recoverable organo-catalysts to the DMAP·Hsac adduct by using non-polar solvent and a fluorous long-chained pyridine under the thermomorphic mode in phospha-Michael addition reactions.

摘要

磷迈克尔加成反应是一种磷亲核试剂与取代不饱和键的加成反应,无疑是形成 P-C 键最通用和最强大的工具之一,因为可以将许多不同的亲电试剂和 P 亲核试剂组合在一起。这提供了获得许多不同官能化产物的可能性。在这项工作中,使用了两种基于吡啶的碱性有机催化剂,即 4,4-二甲基氨基吡啶甲磺酸盐(DMAP·Hsac)盐和全氟长链吡啶(4--CHOCH-py,其中 = CF),有效地催化磷迈克尔加成反应。这些催化剂已由 Lu 小组合成并进行了表征。在这些催化剂的存在下,二异丙基、二甲基或三乙基膦酸酯与α,β-不饱和丙二酸盐的磷迈克尔加成反应在 80-100°C 下反应 1-4.5 小时,产率很高,具有很高的催化回收和可重复使用性。关于显著的催化回收,有时观察到 DMAP·Hsac 加合物在使用非极性溶剂(例如醚)沉淀出催化剂的情况下,超过八次循环。对于全氟长链吡啶,使用热致相分离法有效地在所有反应中回收了八次循环的催化剂。因此,催化剂与产物的容易分离显示出我们的体系的出色效果。据我们所知,这些是在磷迈克尔加成反应中使用非极性溶剂和热致相分离模式下回收可回收有机催化剂的良好实例,DMAP·Hsac 加合物和全氟长链吡啶。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/a215/7926848/605a3ceab863/molecules-26-01159-sch001.jpg

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