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Mechanism Selection for Regiocontrol in Base‐Assisted, Palladium‐Catalysed Direct CH Coupling with Halides: First Approach for Oxazole‐ and Thiazole‐4‐Carboxylates
63
Citations
79
References
2011
Year
Both base-assisted non-concerted metallation-deprotonation (nCMD) and concerted metallation-deprotonation (CMD) have been identified as two potent operating mechanisms in palladium-catalysed direct C-H coupling of oxazole and thiazole-4-carboxylate esters with halides through base- and solvent-effect experiments. Novel C2- and C5-selective CMD direct arylation procedures in oxazole- and thiazole-4-carboxylate series were then designed by controlling the balance between electronic and steric factors. Notably, charge interactions between the palladium catalyst and substrate were identified as a parameter for controlling selectivity and reducing the impact of steric factors in the CMD reaction.
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