Klein Martin, Troglauer David L, Waldvogel Siegfried R
Department of Chemistry, Johannes Gutenberg University Mainz, Duesbergweg 10-14, 55128 Mainz, Germany.
JACS Au. 2023 Feb 7;3(2):575-583. doi: 10.1021/jacsau.2c00663. eCollection 2023 Feb 27.
Herein, we describe an electrochemical pathway for the synthesis of sulfilimines, sulfoximines, sulfinamidines, and sulfinimidate esters from readily available low-valent sulfur compounds and primary amides or their analogues. The combination of solvents and supporting electrolytes together act both as an electrolyte as well as a mediator, leading to efficient use of reactants. Both can be easily recovered, enabling an atom-efficient and sustainable process. A broad scope of sulfilimines, sulfinamidines, and sulfinimidate esters with -EWGs is accessed in up to excellent yields with broad functional group tolerance. This fast synthesis can be easily scaled up to multigram quantities with high robustness for fluctuation of current densities of up to 3 orders of magnitude. The sulfilimines are converted into the corresponding sulfoximines in an ex-cell process in high to excellent yields using electro-generated peroxodicarbonate as a green oxidizer. Thereby, preparatively valuable NH sulfoximines are accessible.
在此,我们描述了一种电化学途径,可从容易获得的低价硫化合物和伯酰胺或其类似物合成亚磺酰亚胺、磺酰亚胺、磺脒和亚磺酰亚胺酯。溶剂和支持电解质的组合既作为电解质又作为介质,从而实现反应物的高效利用。两者都可以很容易地回收,实现原子经济且可持续的过程。可获得范围广泛的带有吸电子基团的亚磺酰亚胺、磺脒和亚磺酰亚胺酯,产率高达优异,具有广泛的官能团耐受性。这种快速合成可以很容易地扩大到数克规模,对高达3个数量级的电流密度波动具有很高的稳健性。使用电生成的过氧二碳酸酯作为绿色氧化剂,亚磺酰亚胺在电池外过程中以高至优异的产率转化为相应的磺酰亚胺。由此,可以获得具有制备价值的N-磺酰亚胺。