Su Fen, Lu Fengfei, Tang Kun, Lv Xiaokang, Luo Zhongfu, Che Fengrui, Long Hongyan, Wu Xingxing, Chi Yonggui Robin
National Key Laboratory of Green Pesticide, Key Laboratory of Green Pesticide and Agricultural Bioengineering, Ministry of Education, Guizhou University, Huaxi District, Guiyang, 550025, China.
School of chemistry, chemical engineering, and biotechnology, Nanyang Technological University, Singapore, 637371, Singapore.
Angew Chem Int Ed Engl. 2023 Nov 6;62(45):e202310072. doi: 10.1002/anie.202310072. Epub 2023 Sep 28.
The direct functionalization of inert C(sp )-H bonds to form carbon-carbon and carbon-heteroatom bonds offers vast potential for chemical synthesis and therefore receives increasing attention. At present, most successes come from strategies using metal catalysts/reagents or photo/electrochemical processes. The use of organocatalysis for this purpose remains scarce, especially when dealing with challenging C-H bonds such as those from simple alkanes. Here we disclose the first organocatalytic direct functionalization/acylation of inert C(sp )-H bonds of completely unfunctionalized alkanes. Our approach involves N-heterocyclic carbene catalyst-mediated carbonyl radical intermediate generation and coupling with simple alkanes (through the corresponding alkyl radical intermediates generated via a hydrogen atom transfer process). Unreactive C-H bonds are widely present in fossil fuel feedstocks, commercially important organic polymers, and complex molecules such as natural products. Our present study shall inspire a new avenue for quick functionalization of these molecules under the light- and metal-free catalytic conditions.
将惰性C(sp³)-H键直接官能团化以形成碳-碳键和碳-杂原子键,在化学合成方面具有巨大潜力,因此受到越来越多的关注。目前,大多数成功案例来自使用金属催化剂/试剂或光/电化学过程的策略。为此目的使用有机催化的情况仍然很少,特别是在处理具有挑战性的C-H键(如来自简单烷烃的那些键)时。在此,我们报道了首例对完全未官能团化烷烃的惰性C(sp³)-H键进行有机催化直接官能团化/酰化反应。我们的方法涉及氮杂环卡宾催化剂介导的羰基自由基中间体的生成,并与简单烷烃偶联(通过氢原子转移过程生成相应的烷基自由基中间体)。无反应活性的C-H键广泛存在于化石燃料原料、具有商业重要性的有机聚合物以及天然产物等复杂分子中。我们目前的研究将为在无光照和无金属催化条件下快速官能团化这些分子开辟一条新途径。