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通过瞬态O-硼化喹啉实现铱催化的4-喹诺酮的区域选择性C8-H硼化反应

Regioselective Iridium-Catalyzed C8-H Borylation of 4-Quinolones via Transient O-Borylated Quinolines.

作者信息

Al Mamari Hamad H, Borel Julie, Hickey Aobha, Courtney Eimear, Merz Julia, Zhang Xiaolei, Friedrich Alexandra, Marder Todd B, McGlacken Gerard P

机构信息

Department of Chemistry, College of Science, Sultan Qaboos University, PO Box 36, Al Khoudh 123, Muscat, Sultanate of Oman.

Institut für Anorganische Chemie and, Institute for Sustainable Chemistry & Catalysis with Boron (ICB), Julius-Maximilians-Universität Würzburg, Am Hubland, 97074, Würzburg, Germany.

出版信息

Chemistry. 2023 Aug 25;29(48):e202301734. doi: 10.1002/chem.202301734. Epub 2023 Jul 19.

Abstract

The quinolone-quinoline tautomerization is harnessed to effect the regioselective C8-borylation of biologically important 4-quinolones by using [Ir(OMe)(cod)] as the catalyst precursor, the silica-supported monodentate phosphine Si-SMAP as the ligand, and B pin as the boron source. Initially, O-borylation of the quinoline tautomer takes place. Critically, the newly formed 4-(pinBO)-quinolines then undergo N-directed selective Ir-catalyzed borylation at C8. Hydrolysis of the OBpin moiety on workup returns the system to the quinolone tautomer. The C8-borylated quinolines were converted to their corresponding potassium trifluoroborate (BF K) salts and to their C8-chlorinated quinolone derivatives. The two-step C-H borylation-chlorination reaction sequence resulted in various C8-Cl quinolones in good yields. Conversion to C8-OH-, C8-NH -, and C8-Ar-substituted quinolones was also feasible by using this methodology.

摘要

利用喹诺酮 - 喹啉互变异构,以[Ir(OMe)(cod)]作为催化剂前体、二氧化硅负载的单齿膦Si - SMAP作为配体、Bpin作为硼源,实现了对具有生物学重要性的4 - 喹诺酮进行区域选择性C8 - 硼化反应。最初,喹啉互变异构体发生O - 硼化反应。关键的是,新形成的4 - (pinBO) - 喹啉随后在C8位发生N导向的选择性Ir催化硼化反应。后处理过程中OBpin部分的水解使体系恢复到喹诺酮互变异构体。C8 - 硼化喹啉被转化为相应的三氟硼酸钾(BFK)盐及其C8 - 氯化喹诺酮衍生物。两步C - H硼化 - 氯化反应序列以良好的产率得到了各种C8 - Cl喹诺酮。通过该方法将其转化为C8 - OH -、C8 - NH - 和C8 - Ar取代的喹诺酮也是可行的。

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