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在聚全氟乙丙烯串联反应器中使用过氧乙酸介导的氧化反应按需(原位)生成硝基烷烃的连续平台。

Continuous Platform to Generate Nitroalkanes On-Demand (in situ) using Peracetic Acid-Mediated Oxidation in a PFA Pipes-in-Series Reactor.

作者信息

Tsukanov Sergey V, Johnson Martin D, May Scott A, Kolis Stanley P, Yates Matthew H, Johnston Jeffrey N

机构信息

Small Molecule Design and Development, Eli Lilly and Company, Indianapolis, Indiana 46285, Unites States.

Department of Chemistry and Vanderbilt Institute of Chemical Biology, Vanderbilt University, Nashville, Tennessee 37235, United States.

出版信息

Org Process Res Dev. 2018 Aug 17;22(8):971-977. doi: 10.1021/acs.oprd.8b00113. Epub 2018 Jul 19.

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.

摘要

氮杂-Henry反应的合成实用性在放大规模时可能会因使用过酸制备硝基烷烃底物以及硝基烷烃本身所带来的潜在危害而降低。作为应对措施,本文报道了一种连续且可扩展的化学平台,该平台可按需制备脂肪族硝基烷烃,其方法是用过氧乙酸氧化肟,并使硝基烷烃中间体在氮杂-Henry反应中直接反应。一种独特设计的串联管式活塞流反应器解决了一系列工艺挑战,包括过氧化物和硝基烷烃的稳定性及安全处理。随后的连续萃取产生了纯化的硝基烷烃溶液,该溶液可直接用于后续的对映选择性氮杂-Henry反应中,以高选择性地提供有价值的手性二胺前体,从而完全避免了分离潜在不安全的低分子量硝基烷烃中间体。一项持续16小时的实验证明,这些条件可有效地处理100克肟并得到1.4升硝基烷烃溶液。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/07e2/6424520/8242ab3b9bc4/nihms-982847-f0026.jpg

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本文引用的文献

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Synthesis of α-Nitro Carbonyls via Nitrations in Flow.通过流动硝化合成α-硝基羰基化合物。
J Org Chem. 2016 Oct 7;81(19):9415-9421. doi: 10.1021/acs.joc.6b01634. Epub 2016 Sep 19.

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