Departamento de Química, Universitat Politècnica de València, Camino de Vera s/n, 46022, Valencia, Spain.
Photochem Photobiol Sci. 2022 Jul;21(7):1175-1184. doi: 10.1007/s43630-022-00203-5. Epub 2022 Mar 18.
In this work, the feasibility of triplet fusion upconversion (TFU, also named triplet-triplet annihilation upconversion) technology for the functionalization (arylation) of furans and thiophenes has been successfully proven. Activation of aryl halides by TFU leads to generation of aryl radical intermediates; trapping of the latter by the corresponding heteroarenes, which act as nucleophiles, affords the final coupling products. Advantages of this photoredox catalytic method include the use of very mild conditions (visible light, standard conditions), employment of commercially available reactants and low-loading metal-free photocatalysts, absence of any sacrificial agent (additive) in the medium and short irradiation times. The involvement of the high energetic delayed fluorescence in the reaction mechanism has been evidenced by quenching studies, whereas the two-photon nature of this photoredox arylation of furans and thiophenes has been manifested by the dependence on the energy source power. Finally, the scaling-up conditions have been gratifyingly afforded by a continuous-flow device.
在这项工作中,成功证明了三重态融合上转换(TFU,也称为三重态-三重态湮灭上转换)技术用于呋喃和噻吩功能化(芳基化)的可行性。TFU 可激活芳基卤化物,生成芳基自由基中间体;后者被相应的杂芳环捕获,杂芳环作为亲核试剂,生成最终的偶联产物。这种光氧化还原催化方法的优点包括使用非常温和的条件(可见光、标准条件)、使用商业上可获得的反应物和低负载量的无金属光催化剂、在介质中不使用任何牺牲剂(添加剂)以及短的辐照时间。通过猝灭研究证实了反应机理中高能延迟荧光的参与,而通过对能量源功率的依赖,证明了这种呋喃和噻吩的双光子光芳基化的性质。最后,通过连续流装置令人满意地提供了放大条件。