Kumar Sangit, Engman Lars
Department of Biochemistry and Organic Chemistry, Box 576, SE-751 23 Uppsala, Sweden.
J Org Chem. 2006 Jul 7;71(14):5400-3. doi: 10.1021/jo060690a.
Diaryl chalcogenide synthesis employing diaryl dichalcogenides and aryl halides as starting materials in the presence of excess magnesium and a catalytic amount of CuI/bipyridyl is significantly improved by microwave heating. Reaction times can be reduced from 2 to 3 days to 6-8 h. Both aryl bromides and aryl chlorides can be used as substrates in the substitution reaction. The procedure is useful not only for diaryl sulfide and diaryl selenide synthesis but also for the preparation of unsymmetrical diaryl tellurides. Starting from suitable aryl halides, the novel microwave-assisted procedure was used for the facile preparation of novel chalcogen analogues (PhS-, PhSe-, and PhTe-) of various antioxidants (ethoxyquin and 3-pyridinol). Attempts to use dialkyl dichalcogenides for the coupling of alkylchalcogeno moieties to aryl halides were only successful in the case of long-chain (such as n-octyl) disulfides and diselenides.
在过量镁和催化量的碘化亚铜/联吡啶存在下,以二芳基二硫属元素化物和芳基卤化物为起始原料合成二芳基硫属元素化物的反应,通过微波加热得到显著改善。反应时间可从2至3天缩短至6 - 8小时。芳基溴化物和芳基氯化物均可作为取代反应的底物。该方法不仅可用于二芳基硫醚和二芳基硒醚的合成,还可用于制备不对称二芳基碲化物。从合适的芳基卤化物出发,该新型微波辅助方法被用于简便地制备各种抗氧化剂(乙氧喹和3 - 吡啶醇)的新型硫属元素类似物(苯硫基、苯硒基和苯碲基)。尝试使用二烷基二硫属元素化物将烷基硫属元素部分与芳基卤化物偶联,仅在长链(如正辛基)二硫化物和二硒化物的情况下取得成功。