Murarka Sandip, Wertz Sebastian, Studer Armido
Organisch-Chemisches Institut, Westfälische Wilhelms-Universität Münster, Corrensstraße 40, D-48149 Münster, Germany.
Chimia (Aarau). 2012;66(6):413-7. doi: 10.2533/chimia.2012.413.
The application of nitroxides for the development of new synthetic methods and their implementation in polymer chemistry, material science and beyond is one of the major research topics in our laboratory in the institute of organic chemistry at the WWU Münster. This short review focuses on our recent progress towards nitroxide-based transition-metal-free oxidative coupling reactions. The demand for organic surrogates for transition metals in such transformations is in our eyes unquestionable, since environmental and economic issues have become progressively more important in recent years. For this purpose, the 2,2,6,6-tetramethylpiperidine-N-oxyl radical (TEMPO) is shown to be a highly efficient oxidant for the homo- and cross-coupling of Grignard reagents. This powerful C-C bond forming strategy allows the generation of conjugated polymers from bifunctional Grignard reagents. Moreover, cross-coupling of alkynyl Grignard compounds and nitrones can be accomplished under aerobic atmosphere with catalytic amounts of TEMPO. It is also shown that TEMPO-derived N-oxoammonium salts can act as suitable oxidants for formation of C-N bonds between non-preactivated benzoxazoles and secondary amines under metal-free conditions.
氮氧化物在新合成方法开发中的应用及其在高分子化学、材料科学及其他领域的应用,是我们明斯特大学有机化学研究所实验室的主要研究课题之一。这篇简短的综述聚焦于我们在基于氮氧化物的无过渡金属氧化偶联反应方面的最新进展。在我们看来,在这类转化中对过渡金属有机替代物的需求是毋庸置疑的,因为近年来环境和经济问题变得越来越重要。为此,2,2,6,6-四甲基哌啶-N-氧基自由基(TEMPO)被证明是格氏试剂均相偶联和交叉偶联的高效氧化剂。这种强大的碳-碳键形成策略使得由双官能格氏试剂生成共轭聚合物成为可能。此外,在有氧气氛下,炔基格氏化合物与硝酮的交叉偶联可以在催化量的TEMPO存在下实现。研究还表明,TEMPO衍生的N-氧代铵盐可以作为合适的氧化剂,在无金属条件下使未预活化的苯并恶唑与仲胺之间形成碳-氮键。