Zhu Hai-Tao, Arosio Luca, Villa Roberto, Nebuloni Marino, Xu Hao
Department of Chemistry, Georgia State University, 100 Piedmont Avenue SE, Atlanta, Georgia 30303, United States.
Redox Laboratory, Viale G.B. Stucchi 62/26, Monza (MB), 20900, Italy.
Org Process Res Dev. 2017 Dec 15;21(12):2068-2072. doi: 10.1021/acs.oprd.7b00312. Epub 2017 Nov 8.
We report herein a process safety assessment of the iron-catalyzed direct olefin diazidation for the preparation of a broad range of synthetically valuable vicinal primary diamines. Differential scanning calorimetry analysis of the corresponding reagents, intermediates, and a list of representative diazide/diaminium salt products revealed that all of them are thermal stable at the reaction temperature. The drop weight test of the diazides suggested that they are moderately impact-sensitive. Guided by this assessment, an optimized olefin diazidation/diamination procedure has been developed which allows for the gram-scale diaminium salt synthesis without purification of the diazide intermediate.
我们在此报告了铁催化直接烯烃重氮化反应的过程安全评估,该反应用于制备一系列具有合成价值的邻位伯二胺。对相应的试剂、中间体以及一系列代表性的重氮化合物/二铵盐产物进行差示扫描量热分析表明,它们在反应温度下均具有热稳定性。重氮化合物的落锤试验表明它们对冲击有一定敏感性。在该评估的指导下,开发了一种优化的烯烃重氮化/胺化程序,该程序允许在不纯化重氮中间体的情况下进行克级二铵盐的合成。