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Is Silver a Mere Terminal Oxidant in Palladium Catalyzed C-H Bond Activation Reactions?

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Journal Chem Sci
Specialty Chemistry
Date 2020 Feb 29
PMID 32110372
Citations 11
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Abstract

In the contemporary practice of palladium catalysis, a molecular understanding of the role of vital additives used in such reactions continues to remain rather vague. Herein, we disclose an intriguing and a potentially general role for one of the most commonly used silver salt additives, discovered through rigorous computational investigations on four diverse Pd-catalyzed C-H bond activation reactions involving sp aryl C-H bonds. The catalytic pathways of different reactions such as phosphorylation, arylation, alkynylation, and oxidative cycloaddition are analyzed, with and without the explicit inclusion of the silver additive in the respective transition states and intermediates. Our results indicate that the pivotal role of silver salts is likely to manifest in the form of a Pd-Ag heterobimetallic species that facilitates intermetallic electronic communication. The Pd-Ag interaction is found to provide a consistently lower energetic span as compared to an analogous pathway devoid of such interaction. Identification of a lower energy pathway as well as enhanced catalytic efficiency due to Pd-Ag interaction could have broad practical implications in the mechanism of transition metal catalysis and the current perceptions on the same.

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References
1.
Tasker S, Standley E, Jamison T . Recent advances in homogeneous nickel catalysis. Nature. 2014; 509(7500):299-309. PMC: 4344729. DOI: 10.1038/nature13274. View

2.
Fabry D, Rueping M . Merging Visible Light Photoredox Catalysis with Metal Catalyzed C-H Activations: On the Role of Oxygen and Superoxide Ions as Oxidants. Acc Chem Res. 2016; 49(9):1969-79. PMC: 5032069. DOI: 10.1021/acs.accounts.6b00275. View

3.
Wang G, Yuan T, Li D . One-pot formation of C-C and C-N bonds through palladium-catalyzed dual C-H activation: synthesis of phenanthridinones. Angew Chem Int Ed Engl. 2011; 50(6):1380-3. DOI: 10.1002/anie.201005874. View

4.
Jindal G, Sunoj R . Importance of ligand exchanges in Pd(II)-Brønsted acid cooperative catalytic approach to spirocyclic rings. J Am Chem Soc. 2014; 136(45):15998-6008. DOI: 10.1021/ja5076629. View

5.
Lee J, Luscombe C . Dual-Catalytic Ag-Pd System for Direct Arylation Polymerization to Synthesize Poly(3-hexylthiophene). ACS Macro Lett. 2022; 7(7):767-771. DOI: 10.1021/acsmacrolett.8b00429. View