As one of very important organic structure units, nitrogen-containing heterocycles widely exist in various organocatalysts, ligands and pharmaceutical molecules and natural products, and plays a significant role in organic synthesis, medicine and materials. A series of new reactions and methods for efficient building complex N-heterocyclic frameworks from commercially available N-heterocyclic compounds will be established in this project through combining powerful C-H bond functionalization strategy and mild visible-light photoredox catalysis. Furthermore, this research provides a good opportunity to develop new reaction model for C-H bond functionalization, promote the application of visible-light photocatalysis in asymmetric organic synthesis field, and establish divergent synthesis methodology based on direct C-H bond functionalization strategy.
含氮杂环是一类非常重要的有机结构单元,其广泛存在于各种有机小分子催化剂、配体、药物分子以及天然产物,并且在有机合成、医药以及材料等领域发挥着非常重要的作用。本项目拟以简单的含氮杂环骨架为研究对象,使用高效的C-H键直接官能团化为研究策略,利用温和的可见光催化作为研究工具,来发展一系列高效构筑复杂含氮杂环骨架的新反应和新方法。另外,以此研究为契机,发展新的C-H键直接官能团化反应模型、推动可见光催化在不对称合成领域的应用并建立基于C-H键直接官能团化策略的多样化合成方法。
含氮杂环是一类非常重要的有机结构单元,其广泛存在于各种有机小分子催化剂、配体、药物分子以及天然产物,并且在有机合成、医药以及材料等领域发挥着非常重要的作用。本项目以简单的含氮杂环骨架为研究对象,使用高效的C-H键直接官能团化为研究策略,通过开发新型有机光氧化还原催化剂,发展一系列高效构筑复杂含氮杂环骨架的新反应和新方法。
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数据更新时间:2023-05-31
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