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Rapid “high” temperature batch and flow lithiation-trapping of N-Boc pyrrolidine

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Abstract The development of suitable reaction conditions for the rapid “high” temperature lithiation-trapping of N-Boc pyrrolidine under batch and flow conditions is described. For optimisation of batch conditions, the lithiation-trapping… Click to show full abstract

Abstract The development of suitable reaction conditions for the rapid “high” temperature lithiation-trapping of N-Boc pyrrolidine under batch and flow conditions is described. For optimisation of batch conditions, the lithiation-trapping was explored using s-BuLi at temperatures of −30 to 20 °C. Two new batch lithiation conditions were discovered using the biomass-derived, sustainable solvent, 2-MeTHF: diamine-free lithiation in 2-MeTHF gave α-substituted pyrrolidines in 50–69% yields at −20 °C or 0 °C. The requirement for very short lithiation times is explained by the chemical instability of the lithiated intermediate at high temperatures. A practical flow chemistry reaction manifold (s-BuLi, TMEDA, THF, 0 °C, 5 s) has been developed which delivered an α-substituted pyrrolidine in 59% yield. This flow process opens up new opportunities for scaling-up of lithiation-trapping reactions of N-Boc heterocycles.

Keywords: lithiation; high temperature; rapid high; batch; lithiation trapping; flow

Journal Title: Tetrahedron
Year Published: 2021

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