The mechanism and origin of the regioselectivity of cobalt-catalyzed annulation of allenes with benzamide: a computational study.

@article{Wu2018TheMA,
  title={The mechanism and origin of the regioselectivity of cobalt-catalyzed annulation of allenes with benzamide: a computational study.},
  author={Xiajun Wu and Xiuling Wen and Juan Li},
  journal={Dalton transactions},
  year={2018},
  volume={47 38},
  pages={
          13592-13601
        }
}
Thrimurtulu et al. recently reported unprecedented cobalt-catalyzed annulation of allenes with benzamide (N. Thrimurtulu, A. Dey, D. Maiti, C. M. R. Volla, Angew. Chem., Int. Ed., 2016, 55, 12361-12365). In this reaction, the substituent on the allene controls the regioselectivity for the formation of either dihydroisoquinolin-1(2H)-one or isoquinolin-1(2H)-one. In the present study, density functional theory calculations were performed to investigate the detailed reaction mechanism and the… 
2 Citations
Metallaphotoredox-catalyzed C–H activation: regio-selective annulation of allenes with benzamide
TLDR
This reaction provides a mild and environmentally friendly method for the construction of isoquinolinone scaffolds in good to excellent yields, demonstrating broad substrate scopes, high regioselectivity, and good functional group compatibility.

References

SHOWING 1-10 OF 86 REFERENCES
Cobalt-catalyzed C–H activation and regioselective intermolecular annulation with allenes
TLDR
A novel and efficient intermolecular annulation of N-(quinolin-8-yl)benzamide with allenes via cobalt-catalyzed C–H activation through a new annulation pathway with allene is presented.
Cobalt-Catalyzed sp(2) -C-H Activation: Intermolecular Heterocyclization with Allenes at Room Temperature.
TLDR
A unified approach to synthesize a diverse array of biologically and pharmaceutically relevant heterocyclic moieties by cobalt-catalyzed directed C-H functionalization was envisioned and led to the regioselective formation of dihydroisoquinolin-1(2H)-ones, isoquinolin -ones, dihydropyridones, and pyridone.
Convergent Synthesis of Diverse Tetrahydropyridines via Rh(I)-Catalyzed C–H Functionalization Sequences
TLDR
These concise reaction sequences enable the formation of highly substituted piperidines in synthetically useful yields with excellent diastereoselectivity.
Rhodium-catalyzed (5+1) annulations between 2-alkenylphenols and allenes: a practical entry to 2,2-disubstituted 2H-chromenes.
TLDR
The whole process, which involves the cleavage of one C-H bond of the alkenyl moiety and the participation of the allene as a one-carbon cycloaddition partner, can be considered a simple, versatile, and atom-economical (5+1) heteroannulation.
Ruthenium(II)-Catalyzed C-H Functionalizations with Allenes: Versatile Allenylations and Allylations.
TLDR
Ruthenium(II)-catalyzed direct C-H functionalization of aromatic compounds with allenes was achieved under exceedingly mild reaction conditions to yield trisubstituted allenes, thereby providing a versatile means of accessing trisUBstituting allenes.
Efficient Access to Bicyclo[4.3.0]nonanes: Copper-Catalyzed Asymmetric Silylative Cyclization of Cyclohexadienone-Tethered Allenes.
TLDR
This mild transformation is generally compatible with a wide range of functional groups, which allows further conversion of the bicyclic products to bridged and tricyclic ring structures.
Towards ideal synthesis: alkenylation of aryl C-H bonds by a Fujiwara-Moritani reaction.
An overview of recent progress in the Fujiwara-Moritani reaction, which is the palladium-catalyzed oxidative coupling of arenes with olefins to afford alkenyl arenes, is described. It is emphasized
Atom-Economical Dimerization Strategy by the Rhodium-Catalyzed Addition of Carboxylic Acids to Allenes: Protecting-Group-Free Synthesis of Clavosolide A and Late-Stage Modification.
TLDR
The excellent efficiency and selectivity with which the C2 -symmetric core structures were obtained are remarkable considering the outcome under classical dimerization conditions.
Mechanistic Study of Cp*CoIII/RhIII-Catalyzed Directed C-H Functionalization with Diazo Compounds.
TLDR
The study of an alternative Rh-based system having acetate ligands replaced with MeCN indicates that C-H bond activation is sensitive to those ligands and variation can affect which step is turnover-limiting, and theory suggests that further tuning of acidity may offer opportunities for improving catalysis.
...
1
2
3
4
5
...