Abstract
Whereas 2,3-dichloropyridine and 2,5-dichloro-4-(lithiooxy)-pyridine undergo deprotonation exclusively at the 4- and 2-positions, respectively, optional site selectivity can be implemented with 2,5- and 3,4-dichloropyridine (which are attacked, depending on the choice of the reagents, at either the 4- or 6- and either the 2- and 5-positions, respectively). Upon treatment with lithium diisopropylamide, 2,4-dichloro-3-iodopyridine, 3,5-dichloro-4-bromopyridine and 2,6-dichloro-3-iodopyridine afford 5-, 2- and 4-lithiated intermediates, but the latter isomerize instantaneously to species in which lithium and iodine have swapped places, the driving force being the low basicity of C-Li bonds when flanked by two neighboring halogens.
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Marzi, E., Bigi, A., & Schlosser, M. (2001). Strategies for the selective functionalization of dichloropyridines at various sites. European Journal of Organic Chemistry, (7), 1371–1376. https://doi.org/10.1002/1099-0690(200104)2001:7<1371::AID-EJOC1371>3.0.CO;2-E
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