Mei Shan, Ou Qi, Tang Xingchen, Xu Jiang-Fei, Zhang Xi
Key Laboratory of Organic Optoelectronics & Molecular Engineering, Department of Chemistry, Tsinghua University, Beijing 100084, China.
AI for Science Institute, Beijing 100080, China.
Org Lett. 2023 Jul 21;25(28):5291-5296. doi: 10.1021/acs.orglett.3c01854. Epub 2023 Jul 10.
A cucurbit[7]uril-based host-guest strategy is employed to enhance the efficiency of photolysis reactions that release caged molecules from photoremovable protecting groups. The photolysis of benzyl acetate follows a heterolytic bond cleavage mechanism, thereby leading to the formation of a contact ion pair as the key reactive intermediate. The Gibbs free energy of the contact ion pair is lowered by 3.06 kcal/mol through the stabilization of cucurbit[7]uril, as revealed by DFT calculations, which results in a 40-fold increase in the quantum yield of the photolysis reaction. This methodology is also applicable to the chloride leaving group and the diphenyl photoremovable protecting group. We anticipate that this research presents a novel strategy to improve reactions involving active cationics, thereby enriching the field of supramolecular catalysis.
采用基于葫芦[7]脲的主客体策略来提高光解反应的效率,该反应能从光可移除保护基团中释放笼形分子。乙酸苄酯的光解遵循异裂键断裂机制,从而导致形成接触离子对作为关键反应中间体。通过密度泛函理论计算表明,葫芦[7]脲的稳定作用使接触离子对的吉布斯自由能降低了3.06千卡/摩尔,这导致光解反应的量子产率提高了40倍。该方法也适用于氯离去基团和二苯基光可移除保护基团。我们预计这项研究提出了一种改进涉及活性阳离子的反应的新策略,从而丰富了超分子催化领域。