Roy Debojyoti, Paul Sunandita, Dasgupta Jyotishman
Department of Chemical Sciences, Tata Institute of Fundamental Research, 1-Homi Bhabha Road, Mumbai-400005, India.
Chem Commun (Camb). 2023 Nov 2;59(88):13143-13146. doi: 10.1039/d3cc03987k.
Ultrafast C-H bond activation and functionalization in confinement using visible light will enable engineering chemical reactions with extraordinary speed and selectivity. To provide a transition metal-free route, here we demonstrate C-H bond activation reactions on poly-aromatic hydrocarbons (PAH) in all-organic cationic nanocage ExBox for the first time. Visible light excitation in the host-guest charge transfer (CT) state allows the formation of oxidized photoproducts with high selectivity. Mechanistic understanding of this CT-mediated photoreaction using femtosecond broadband transient absorption revealed a few ∼100 ps timescale for C-H bond breaking on the attached -CH group sequential electron transfer and proton transfer steps. We envision that our photosensitizer-free method will open up new avenues to pursue organic reactions using cavities that could serve both as photoredox catalysts and hosts for reactive reaction intermediates.
利用可见光在受限环境中实现超快C-H键活化和官能团化,将能够以非凡的速度和选择性设计化学反应。为了提供一种无过渡金属的途径,我们首次展示了在全有机阳离子纳米笼ExBox中对多环芳烃(PAH)进行C-H键活化反应。主客体电荷转移(CT)态下的可见光激发使得能够高选择性地形成氧化光产物。利用飞秒宽带瞬态吸收对这种CT介导的光反应进行机理研究,结果表明,在连接的-CH基团上,C-H键断裂的时间尺度约为100皮秒,涉及连续的电子转移和质子转移步骤。我们设想,我们的无光敏剂方法将开辟新途径,利用既可以作为光氧化还原催化剂又可以作为反应性反应中间体宿主的空腔来进行有机反应。