AI Article Synopsis

  • The aza-Henry reaction can be risky when scaling up due to hazards from peracids and nitroalkanes, leading to the need for safer alternatives.
  • A new continuous and scalable platform was developed to create aliphatic nitroalkanes by oxidizing oximes using peracetic acid, which allows direct use of the nitroalkane in the aza-Henry reaction.
  • The innovative pipe-in-series reactor improves safety and efficiency, enabling the production of purified nitroalkane solutions for enantioselective reactions while avoiding dangerous intermediate isolation.

Article Abstract

The synthetic utility of the aza-Henry reaction can be diminished on scale by potential hazards associated with the use of peracid to prepare nitroalkane substrates, and the nitroalkanes themselves. In response, a continuous and scalable chemistry platform to prepare aliphatic nitroalkanes on-demand is reported, using the oxidation of oximes with peracetic acid and direct reaction of the nitroalkane intermediate in an aza-Henry reaction. A uniquely designed pipes-in-series plug flow tube reactor addresses a range of process challenges including stability and safe handling of peroxides and nitroalkanes. The subsequent continuous extraction generates a solution of purified nitroalkane which can be directly used in the following enantioselective aza-Henry chemistry to furnish valuable chiral diamine precursors in high selectivity, thus, completely avoiding isolation of potentially unsafe low molecular weight nitroalkane intermediate. A continuous campaign (16 h) established that these conditions were effective in processing 100 g of the oxime and furnishing 1.4 L of nitroalkane solution.

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Source
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC6424520PMC
http://dx.doi.org/10.1021/acs.oprd.8b00113DOI Listing

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