4.6 Article

Generation of Tosyl Azide in Continuous Flow Using an Azide Resin, and Telescoping with Diazo Transfer and Rhodium Acetate-Catalyzed O-H Insertion

Journal

ORGANIC PROCESS RESEARCH & DEVELOPMENT
Volume 25, Issue 12, Pages 2772-2785

Publisher

AMER CHEMICAL SOC
DOI: 10.1021/acs.oprd.1c00377

Keywords

diazo transfer; azide resin; sulfonyl azide generation; alpha-aryl-alpha-diazoacetate; rhodium catalysis; O-H insertion

Funding

  1. Synthesis and Solid State Pharmaceutical Centre (SSPC) by Science Foundation Ireland
  2. European Regional Development Fund [SFI SSPC2 12/RC/2275, SFI SSPC3 Pharm5 12/RC/2275_2]
  3. SFI [SFI 15/RI/3221]

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This study demonstrates the generation of tosyl azide in acetonitrile in flow under water-free conditions using an azide resin, and its use in diazo transfer to a series of aryl acetates. Successful telescoping with a rhodium acetate-catalyzed O-H insertion has been achieved, presenting a cleaner process compared to traditional batch conditions. The use of azide resin offers safety advantages and complements earlier protocols for tosyl azide generation in flow.
Generation of tosyl azide 12 in acetonitrile in flow under water-free conditions using an azide resin and its use in diazo transfer to a series of aryl acetates are described. Successful telescoping with a rhodium acetate-catalyzed O-H insertion has been achieved, thereby transforming the aryl acetate 8 to alpha-hydroxy ester 10, a key intermediate in the synthesis of clopidogrel 11, without requiring isolation or handling of either tosyl azide 12 or alpha-aryl-alpha-diazoacetate 9, or indeed having significant amounts of either present at any point. Significantly, the solution of alpha-diazo ester 9 was sufficiently clean to progress directly to the rhodium acetate-catalyzed step without any detrimental impact on the efficiency of the O-H insertion. In addition, the rhodium acetate-catalyzed O-H insertion process is cleaner in flow than under traditional batch conditions. Use of the azide resin offers clear safety advantages and, in addition, this approach complements earlier protocols for the generation of tosyl azide 12 in flow; this protocol is especially useful with less acidic substrates.

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