Ryan Ailbhe A, Dempsey Seán D, Smyth Megan, Fahey Karen, Moody Thomas S, Wharry Scott, Dingwall Paul, Rooney David W, Thompson Jillian M, Knipe Peter C, Muldoon Mark J
Almac Group, Craigavon BT63 5QD, United Kingdom.
Arran Chemical Company, Roscommon N37 DN24, Ireland.
Org Process Res Dev. 2023 Jan 14;27(2):262-268. doi: 10.1021/acs.oprd.2c00222. eCollection 2023 Feb 17.
Epoxidation of alkenes is a valuable transformation in the synthesis of fine chemicals. Described herein are the design and development of a continuous flow process for carrying out the epoxidation of alkenes with a homogeneous manganese catalyst at metal loadings as low as 0.05 mol%. In this process, peracetic acid is generated and telescoped directly into the epoxidation reaction, thus reducing the risks associated with its handling and storage, which often limit its use at scale. This flow process lessens the safety hazards associated with both the exothermicity of this epoxidation reaction and the use of the highly reactive peracetic acid. Controlling the speciation of manganese/2-picolinic acid mixtures by varying the ligand:manganese ratio was key to the success of the reaction. This continuous flow process offers an inexpensive, sustainable, and scalable route to epoxides.
烯烃的环氧化反应在精细化学品合成中是一种重要的转化反应。本文描述了一种连续流动工艺的设计与开发,该工艺可使用负载量低至0.05 mol%的均相锰催化剂对烯烃进行环氧化反应。在此过程中,过氧乙酸直接原位生成并直接用于环氧化反应,从而降低了与过氧乙酸处理和储存相关的风险,这些风险常常限制了其大规模应用。这种流动工艺降低了与该环氧化反应的放热性以及高活性过氧乙酸的使用相关的安全隐患。通过改变配体与锰的比例来控制锰/2-吡啶甲酸混合物的形态是该反应成功的关键。这种连续流动工艺为环氧化物提供了一种廉价、可持续且可扩展的合成路线。