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We report an efficient lithium -butoxide (LiOBu)-mediated transesterification of -hydroxyphthalimide (NHPI) esters with oximes to afford oxime esters under mild conditions. This transition-metal-free method exhibits high chemoselectivity, broad substrate scope, and excellent yields (up to 99%) in acetonitrile (CHCN). Reaction optimization and scalability studies confirm its practical applicability. Mechanistic investigations and density functional theory (DFT) calculations reveal that LiOBu plays a pivotal role by generating a nucleophilic oximate intermediate, which subsequently reacts with NHPI esters through a lithium-assisted chelation pathway. The Lewis acidity of the Li ion is crucial for stabilizing the transition state and facilitating the transformation. This approach offers a simple and efficient strategy for the synthesis of a wide range of oxime ester derivatives, with significant potential for practical applications.
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http://dx.doi.org/10.1039/d5ob00851d | DOI Listing |
Org Biomol Chem
July 2025
Department of Chemistry, Lishui University, Lishui City 323000, Zhejiang Province, People's Republic of China.
We report an efficient lithium -butoxide (LiOBu)-mediated transesterification of -hydroxyphthalimide (NHPI) esters with oximes to afford oxime esters under mild conditions. This transition-metal-free method exhibits high chemoselectivity, broad substrate scope, and excellent yields (up to 99%) in acetonitrile (CHCN). Reaction optimization and scalability studies confirm its practical applicability.
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