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基于多重键活化的溶剂依赖的 CF 键连吲唑衍生物的选择性合成。

Solvent-Dependent Selective Synthesis of CF-Tethered Indazole Derivatives Based on Multiple Bond Activations.

机构信息

NMPA Key Laboratory for Research and Evaluation of Innovative Drug, Collaborative Innovation Center of Henan Province for Green Manufacturing of Fine Chemicals, Key Laboratory of Green Chemical Media and Reactions, Ministry of Education, School of Chemistry and Chemical Engineering, Henan Normal University, Xinxiang, Henan 453007, China.

出版信息

Org Lett. 2023 Feb 10;25(5):720-725. doi: 10.1021/acs.orglett.2c04003. Epub 2023 Jan 27.

Abstract

Presented herein is a solvent-dependent selective synthesis of CF-tethered indazole derivatives via the cascade reactions of 1-arylpyrazolidinones with trifluoromethyl ynones. Mechanistically, the formation of the title products involves cascade N-H/C-H/C-N/C-C bond cleavage along with pyrazole ring formation and pyrazolidinone ring opening. For the formation of a pyrazole scaffold, 1-phenylpyrazolidinone acts as a C2N2 synthon, while trifluoromethyl ynone serves as a C1 synthon. Meanwhile, trifluoromethyl ynone also acts as an enol unit to facilitate the ring opening of the pyrazolidinone ring and provide a trifluoropropenoxy fragment via cleavage of the alkynyl triple bond and migration of the cleaved moiety. When the reaction was run in trifluoroethanol instead of DCE, it selectively afforded indazole derivatives tethered with a trifluoroethoxy moiety through in situ transesterification. To our knowledge, this is the first synthesis of CF-tethered indazole derivatives via concurrent alkynyl activation, pyrazole formation, and CF migration.

摘要

本文报道了一种通过 1-芳基吡唑烷酮与三氟甲基炔酮的级联反应,实现 CF 键连接的吲唑衍生物的溶剂依赖选择性合成。从机理上看,标题产物的形成涉及级联的 N-H/C-H/C-N/C-C 键断裂以及吡唑环的形成和吡唑烷酮环的开环。对于吡唑骨架的形成,1-苯基吡唑烷酮作为 C2N2 前体,而三氟甲基炔酮作为 C1 前体。同时,三氟甲基炔酮也作为烯醇单元,通过切断炔键和迁移切断部分,促进吡唑烷酮环的开环,并提供三氟丙氧基片段。当反应在三氟乙醇中进行而不是在 DCE 中进行时,它通过原位酯交换选择性地得到了与三氟乙氧基键合的吲唑衍生物。据我们所知,这是通过同时激活炔基、形成吡唑和 CF 迁移来合成 CF 键连接的吲唑衍生物的首例报道。

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