2‐Hydroxypyridine‐based Ligands as Promoter in Ruthenium(II) Catalyzed C‐H Bond Activation/Arylation Reactions

Author:

Binnani Chinky1ORCID,Arora Sumangla2ORCID,Priya Bhanu1,Gupta Puneet2ORCID,Singh Sanjay K.1ORCID

Affiliation:

1. Catalysis Group Department of Chemistry Indian Institute of Technology Indore, Simrol Indore 453552 Madhya Pradesh India

2. Computational Catalysis Center Department of Chemistry Indian Institute of Technology Roorkee Roorkee 247667 Uttarakhand India

Abstract

AbstractA class of 2‐hydroxypyridine based ligands are explored to achieve enhanced catalytic activity for ortho‐C−H bond activation/arylation reaction over [(η6p‐cymene)RuCl2]2 catalyst in water. Extensive studies using a series of substituted 2‐hydroxypyridine based ligands (L1L6) inferred that 5‐trifluoromethyl‐2‐hydroxypyridine (L6) exhibited favorable effects to enhance the catalytic activity of Ru(II) catalyst for ortho C−H bond arylation of 2‐phenylpyridine by 8 folds compared to those performed without ligands. The (η6p‐cymene)Ru – L6 system also exhibited enhanced catalytic activity for ortho C−H bond arylation of 2‐phenylpyridine using a variety of aryl halides. NMR and mass investigations inferred the presence of several ligand coordinated Ru(II) species, suggesting the involvement of these species in C−H bond activation reaction. Further in concurrence with the experimental findings, the density functional theory (DFT) calculations also evidenced the prominent role of 2‐hydroxypyridine based ligands in Ru(II) catalyzed C−H bond arylation of 2‐phenylpyridine with lower energy barrier for the C−H activation step.

Funder

Science and Engineering Research Board

Publisher

Wiley

Subject

General Chemistry,Biochemistry,Organic Chemistry

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