Symplectic ID:
2128171
Source:
Europe PubMed Central
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1
Last Synced with Symplectic:
Friday, 11 September, 2026 - 21:47
DOI:
10.1021/jacs.1c05294
Publication Date:
Tuesday, 1 June, 2021
First Page:
9682
Last Page:
9693
Editors list has been truncated:
Abstract:
Site-selective dihalogenated heteroarene cross-coupling with organometallic reagents usually occurs at the halogen proximal to the heteroatom, enabled by intrinsic relative electrophilicity, particularly in strongly polarized systems. An archetypical example is the Suzuki-Miyaura cross-coupling (SMCC) of 2,4-dibromopyridine with organoboron species, which typically exhibit C2-arylation site-selectivity using mononuclear Pd (pre)catalysts. Given that Pd speciation, particularly aggregation, is known to lead to the formation of catalytically competent multinuclear Pd<sub><i>n</i></sub> species, the influence of these species on cross-coupling site-selectivity remains largely unknown. Herein, we disclose that multinuclear Pd species, in the form of Pd<sub>3</sub>-type clusters and nanoparticles, switch arylation site-selectivity from C2 to C4, in 2,4-dibromopyridine cross-couplings with both organoboronic acids (SMCC reactions) and Grignard reagents (Kumada-type reactions). The Pd/ligand ratio and the presence of suitable stabilizing salts were found to be critically important in switching the site-selectivity. More generally, this study provides experimental evidence that aggregated Pd catalyst species not only are catalytically competent but also alter reaction outcomes through changes in product selectivity.
ISSN:
0002-7863
Journal Title:
Journal of the American Chemical Society
eISSN:
1520-5126
Volume:
143
Issue:
25
ID at Source:
MED:34152135
Publication Status:
Published
Open access:
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SSO preference:
chem1943