4.8 Article

Atom-efficient regioselective 1,2-dearomatization of functionalized pyridines by an earth-abundant organolanthanide catalyst

Journal

NATURE CHEMISTRY
Volume 6, Issue 12, Pages 1100-1107

Publisher

NATURE PUBLISHING GROUP
DOI: 10.1038/NCHEM.2087

Keywords

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Funding

  1. National Science Foundation (NSF) [CHE-1213235]
  2. Camille and Henry Dreyfus Postdoctoral Program in Environmental Chemistry
  3. NSF [CHE-1048773]
  4. CINECA [HP10CPZK0T]
  5. Northwestern University

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Developing earth-abundant, non-platinum metal catalysts for high-value chemical transformations is a critical challenge to contemporary chemical synthesis. Dearomatization of pyridine derivatives is an important transformation to access a wide range of valuable nitrogenous natural products, pharmaceuticals and materials. Here, we report an efficient 1,2-regioselective organolanthanide-catalysed pyridine dearomatization process using pinacolborane, which is compatible with a broad range of pyridines and functional groups and employs equimolar reagent stoichiometry. Regarding the mechanism, derivation of the rate law from NMR spectroscopic and kinetic measurements suggests first order in catalyst concentration, fractional order in pyridine concentration and inverse first order in pinacolborane concentration, with C=N insertion into the La-H bond as turnover-determining. An energetic span analysis affords a more detailed understanding of experimental activity trends and the unusual kinetic behaviour, and proposes the catalyst `resting' state and potential deactivation pathways.

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