Departamento de Química, Facultad de Ciencias, Universidad de Burgos, Pza. Misael Bañuelos s/n, 09001, -Burgos, Spain.
Current address: Departamento de Química Orgánica y Química Inorgánica, Campus Científico-Tecnológico, Facultad de Farmacia, Universidad de Alcalá, Autovía A-II, Km 33.1, 28805-Alcalá de Henares, Madrid, Spain.
Chemistry. 2021 Sep 24;27(54):13613-13623. doi: 10.1002/chem.202102000. Epub 2021 Aug 19.
A catalytic domino reduction-imine formation-intramolecular cyclization-oxidation for the general synthesis of a wide variety of biologically relevant N-polyheterocycles, such as quinoxaline- and quinoline-fused derivatives, and phenanthridines, is reported. A simple, easily available, and environmentally friendly dioxomolybdenum(VI) complex has proven to be a highly efficient and versatile catalyst for transforming a broad range of starting nitroarenes involving several redox processes. Not only is this a sustainable, step-economical as well as air- and moisture-tolerant method, but also it is worth highlighting that the waste byproduct generated in the first step of the sequence is recycled and incorporated in the final target molecule, improving the overall synthetic efficiency. Moreover, selected indoloquinoxalines have been photophysically characterized in cyclohexane and toluene with exceptional fluorescence quantum yields above 0.7 for the alkyl derivatives.
报道了一种用于广泛合成各种具有生物相关性的 N-多杂环的催化多米诺还原-亚胺形成-分子内环化-氧化反应,如喹喔啉和喹啉稠合衍生物以及菲啶。一种简单、易得且环保的二氧钼(VI)配合物已被证明是一种高效且多功能的催化剂,可转化涉及多个氧化还原过程的广泛的起始硝基芳烃。这不仅是一种可持续的、节省步骤的、耐空气和湿气的方法,而且值得强调的是,该序列第一步中产生的废物副产物被回收并并入最终的目标分子中,提高了整体合成效率。此外,已对选定的吲哚喹喔啉在环己烷和甲苯中的光物理性质进行了表征,烷基衍生物的荧光量子产率超过 0.7。