Synthesis of Rhodium and Ruthenium Pi-Complexes with Pendant Amide Substituents for Intramolecular Proton Transfer upon Activation of C–H Bonds

Abstract Cyclopentadienyl and arene complexes with pendant amide substituents [(C5Me4CH2CH2NHR)RhCl2]n and [(C6H5CH2CH2NHR)RuCl2]n (R = COCF3, Ts) were synthesized by heating the corresponding dienes with metal chlorides. They were tested as catalysts for the annulation of N-methoxy-p-methylbenzamide with alkynes. Contrary to our expectations, the pendant amide groups did not act as internal proton acceptors and did not accelerate the C–H activation process. However, it was found that the reaction of N-methoxy-p-methylbenzamide with 4-octyne in the presence of various rhodium complexes produced an O-methyl oxime of isocoumarin instead of the expected isoquinolone as the major product.

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Publication Details

Journal
Organometallics
Published
2026-09-14
DOI
https://doi.org/10.1021/acs.organomet.6c00236
Primary Topic
Catalytic C–H Functionalization Methods
Type
article
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article

Synthesis of Rhodium and Ruthenium Pi-Complexes with Pendant Amide Substituents for Intramolecular Proton Transfer upon Activation of C–H Bonds

Roman A. Pototskiy, Dmitry S. Perekalin, Tatiana N. Petrushina, Alevtina S. Voskresenskaia et al.
Organometallics
Catalytic C–H Functionalization Methods
article

Synthesis of Rhodium and Ruthenium Pi-Complexes with Pendant Amide Substituents for Intramolecular Proton Transfer upon Activation of C–H Bonds

Roman A. Pototskiy, Dmitry S. Perekalin, Tatiana N. Petrushina, Alevtina S. Voskresenskaia, Yulia V. Nelyubina
article en

Abstract

Abstract Cyclopentadienyl and arene complexes with pendant amide substituents [(C5Me4CH2CH2NHR)RhCl2]n and [(C6H5CH2CH2NHR)RuCl2]n (R = COCF3, Ts) were synthesized by heating the corresponding dienes with metal chlorides. They were tested as catalysts for the annulation of N-methoxy-p-methylbenzamide with alkynes. Contrary to our expectations, the pendant amide groups did not act as internal proton acceptors and did not accelerate the C–H activation process. However, it was found that the reaction of N-methoxy-p-methylbenzamide with 4-octyne in the presence of various rhodium complexes produced an O-methyl oxime of isocoumarin instead of the expected isoquinolone as the major product.

Organometallics
ITMO University (RU), A. N. Nesmeyanov Institute of Organoelement Compounds (RU)
Clean water and sanitation
Openalex Percentile: Top 20%
Catalytic C–H Functionalization Methods
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