Nitrene C−H Bond Insertion Approach to Carbazolones and Indolones, and a Reactivity Departure for 7‐Membered Analogues**

Author:

Lakshman Mahesh K.12ORCID,Sebastian Dellamol12,Pradhan Padmanava1,Neary Michelle C.3,Piette Alexis M.4,Trzebiatowski Samuel P.4,Henriques Alexander E. K.4,Willoughby Patrick H.4

Affiliation:

1. Department of Chemistry and Biochemistry The City College of New York 160 Convent Avenue New York NY 10031 USA

2. The Graduate Center of the City University of New York The Ph.D. Program in Chemistry 365 Fifth Avenue New York NY 10016 USA

3. Department of Chemistry Hunter College 695 Park Avenue New York NY 10065 USA

4. Department of Chemistry Ripon College 300 W. Seward St. Ripon WI 54971 USA

Abstract

AbstractA modular platform for facile access to 1,2,3,9‐tetrahydro‐4H‐carbazol‐4‐ones (H4‐carbazolones) and 3,4‐dihydrocyclopenta[b]indol‐1(2H)‐ones (H2‐indolones) is described. The requisite 6‐ and 5‐membered 2‐arylcycloalkane‐1,3‐dione precursors were readily obtained through a Cu‐catalyzed arylation of 1,3‐cyclohexanediones or by a ring expansion of aryl succinoin derivatives. Enolization of one carbonyl group in the diones, conversion to a leaving group, and subsequent azidation gave 2‐aryl‐3‐azidocycloalk‐2‐en‐1‐ones. This two‐step, one‐pot azidation is highly regioselective with unsymmetrically substituted 2‐arylcyclohexane‐1,3‐diones. The regioselectivity, which is important for access to single isomers of 3,3‐disubstituted carbazolones, was analyzed mechanistically and computationally. Finally, a Rh‐catalyzed nitrene/nitrenoid insertion into the ortho C−H bond of the aryl moiety gave the H4‐carbazolones and H2‐indolones. One carbazolone was elaborated to an intermediate reported in the total synthesis of N‐decarbomethoxychanofruticosinate, (−)‐aspidospermidine, (+)‐kopsihainanine A. With 2‐phenylcycloheptane‐1,3‐dione, prepared from cyclohexanone and benzaldehyde, the azidation reaction was readily accomplished. However, the Rh‐catalyzed reaction unexpectedly led to a labile but characterizable azirine rather than the indole derivative. Computations were performed to understand the differences in reactivities of the 5‐ and 6‐membered 2‐aryl‐3‐azidocycloalk‐2‐en‐1‐ones in comparison to the 7‐membered analogue, and to support the structural assignment of the azirine.

Funder

National Science Foundation

Air Force Office of Scientific Research

Publisher

Wiley

Subject

General Chemistry,Catalysis,Organic Chemistry

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