Deadman Benjamin J, O'Mahony Rosella M, Lynch Denis, Crowley Daniel C, Collins Stuart G, Maguire Anita R
Department of Chemistry, Analytical and Biological Chemistry Research Facility, Synthesis and Solid State Pharmaceutical Centre, University College Cork, Ireland.
Org Biomol Chem. 2016 Apr 7;14(13):3423-31. doi: 10.1039/c6ob00246c. Epub 2016 Mar 9.
Heat and shock sensitive tosyl azide was generated and used on demand in a telescoped diazo transfer process. Small quantities of tosyl azide were accessed in a 'one pot' batch procedure using shelf stable, readily available reagents. For large scale diazo transfer reactions tosyl azide was generated and used in a telescoped flow process, to mitigate the risks associated with handling potentially explosive reagents on scale. The in situ formed tosyl azide was used to rapidly perform diazo transfer to a range of acceptors, including β-ketoesters, β-ketoamides, malonate esters and β-ketosulfones. An effective in-line quench of sulfonyl azides was also developed, whereby a sacrificial acceptor molecule ensured complete consumption of any residual hazardous diazo transfer reagent. The telescoped diazo transfer process with in-line quenching was used to safely prepare over 21 g of an α-diazocarbonyl in >98% purity without any column chromatography.
热和冲击敏感的对甲苯磺酰叠氮化物在缩合重氮转移过程中按需生成并使用。使用货架稳定、易于获得的试剂,通过“一锅法”分批程序获得少量对甲苯磺酰叠氮化物。对于大规模重氮转移反应,对甲苯磺酰叠氮化物在缩合流动过程中生成并使用,以降低大规模处理潜在易爆试剂相关的风险。原位生成的对甲苯磺酰叠氮化物用于快速将重氮转移到一系列受体上,包括β-酮酯、β-酮酰胺、丙二酸酯和β-酮砜。还开发了一种有效的磺酰叠氮化物在线淬灭方法,通过牺牲受体分子确保完全消耗任何残留的危险重氮转移试剂。带有在线淬灭的缩合重氮转移过程用于安全制备超过21克纯度>98%的α-重氮羰基化合物,无需任何柱色谱法。