Mlostoń Grzegorz, Pipiak Paulina, Heimgartner Heinz
Department of Organic and Applied Chemistry, University of Łódź, Tamka 12, PL 91-403 Łódź, Poland.
Department of Chemistry, University of Zürich, Winterthurerstrasse 190, CH-8057 Zürich, Switzerland.
Beilstein J Org Chem. 2016 Apr 14;12:716-24. doi: 10.3762/bjoc.12.71. eCollection 2016.
Reactions of dihetaryl and aryl/hetaryl thioketones with 2-diazopropane, diazoethane, and (trimethylsilyl)diazomethane were studied at variable temperature. The experiments showed that reactions with 2-diazopropane carried out at -75 °C occur mainly via the initially formed, relatively stable 1,3,4-thiadiazolines as products of the [3 + 2]-cycloaddition of the diazo dipole onto the C=S bond. The latter decompose only at higher temperature (ca. -40 °C) to generate thiocarbonyl S-isopropanide. In the absence of the starting thioketone, the corresponding thiiranes and/or ethene derivatives, formed from them via spontaneous desulfurization, are the main products. In contrast, reactions with diazoethane occurred predominantly via initially formed diradicals, which in cascade processes gave sterically crowded 4,4,5,5-tetrahetaryl-1,3-dithiolanes as major products. Finally, the reaction of dihetaryl thioketones with (trimethylsilyl)diazomethane occur smoothly at -75 °C leading to the corresponding 4,4,5,5-tetrahetaryl-1,3-dithiolanes as the exclusive [3 + 2]-cycloadducts formed via a cascade of postulated diradicals. The presence of S or Se atoms in the hetaryl rings is of importance for stabilizing diradical intermediates. Remarkably, in no single case, the 'head-to-head dimerization' of aryl/hetaryl and dihetaryl substituted thiocarbonyl ylides was observed.
在可变温度下研究了二杂芳基和芳基/杂芳基硫酮与2-重氮丙烷、重氮乙烷和(三甲基硅基)重氮甲烷的反应。实验表明,在-75℃下与2-重氮丙烷进行的反应主要通过最初形成的相对稳定的1,3,4-噻二唑啉进行,该噻二唑啉是重氮偶极子与C=S键发生[3 + 2]环加成的产物。后者仅在较高温度(约-40℃)下分解生成硫代羰基S-异丙酯。在没有起始硫酮的情况下,由它们通过自发脱硫形成的相应硫杂环丙烷和/或乙烯衍生物是主要产物。相比之下,与重氮乙烷的反应主要通过最初形成的双自由基进行,在级联过程中,这些双自由基生成空间拥挤的4,4,5,5-四杂芳基-1,3-二硫杂环戊烷作为主要产物。最后,二杂芳基硫酮与(三甲基硅基)重氮甲烷在-75℃下顺利反应,生成相应的4,4,5,5-四杂芳基-1,3-二硫杂环戊烷,作为通过假定双自由基级联形成的唯一[3 + 2]环加成产物。杂芳基环中S或Se原子的存在对于稳定双自由基中间体很重要。值得注意的是,在任何情况下都未观察到芳基/杂芳基和二杂芳基取代的硫代羰基叶立德的“头对头二聚化”。