Merging dearomatization with redox-neutral C(sp 3 )–H functionalization via hydride transfer/cyclization: recent advances and perspectives

Dearomatization and direct C(sp 3 )–H functionalization represent two hot research fields in organic synthesis, the merging of which is among the most challenging but appealing topics. The emerging hydride transfer-involved dearomatization reaction can achieve this goal in an efficient redox-neutral...

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Veröffentlicht in:Organic Chemistry Frontiers 2022-08, Vol.9 (18), p.5041-5052
Hauptverfasser: Hu, Fangzhi, Shen, Yao-Bin, Wang, Liang, Li, Shuai-Shuai
Format: Artikel
Sprache:eng
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Zusammenfassung:Dearomatization and direct C(sp 3 )–H functionalization represent two hot research fields in organic synthesis, the merging of which is among the most challenging but appealing topics. The emerging hydride transfer-involved dearomatization reaction can achieve this goal in an efficient redox-neutral manner, and encouraging progress has been made in this area during the past decade. Herein, we would like to give a timely account of the topic, and this review is categorized according to the hydride acceptors, namely vinylogous imines and quinone methides, which initiate the cascade hydride transfer/dearomative cyclization process to dearomatize indoles and phenols, respectively. Moreover, the limitations, challenges and future directions are also pointed out.
ISSN:2052-4129
2052-4110
2052-4129
2052-4110
DOI:10.1039/D2QO01054B