Jiao Yang, Tang Bohan, Zhang Yucheng, Xu Jiang-Fei, Wang Zhiqiang, Zhang Xi
Key Lab of Organic Optoelectronics & Molecular Engineering, Department of Chemistry, Tsinghua University, Beijing, 100084, China.
Angew Chem Int Ed Engl. 2018 May 22;57(21):6077-6081. doi: 10.1002/anie.201713351. Epub 2018 Apr 25.
A new strategy of highly efficient supramolecular catalysis is developed by endowing the reaction intermediate with adaptive reactivity. The supramolecular catalyst, prepared by host-guest complexation between 2,2,6,6-tetramethylpiperidin-1-oxyl (TEMPO) and cucurbit[7]uril (CB[7]), was used for biphasic oxidation of alcohols. Cationic TEMPO , the key intermediate, was stabilized by the electrostatic effect of CB[7] in aqueous phase, thus promoting the formation of TEMPO and inhibiting side reactions. Moreover, through the migration into the organic phase, TEMPO was separated from CB[7] and recovered the high reactivity to drive a fast oxidation of substrates. The adaptive reactivity of TEMPO induced an integral optimization of the catalytic cycle and greatly improved the conversion of the reaction. This work highlights the unique advantages of dynamic noncovalent interactions on modulating the activity of reaction intermediates, which may open new horizons for supramolecular catalysis.
通过赋予反应中间体适应性反应活性,开发了一种高效超分子催化的新策略。由2,2,6,6-四甲基哌啶-1-氧基(TEMPO)与葫芦[7]脲(CB[7])通过主客体络合制备的超分子催化剂用于醇的双相氧化。关键中间体阳离子TEMPO在水相中通过CB[7]的静电作用得以稳定,从而促进TEMPO的形成并抑制副反应。此外,通过迁移到有机相中,TEMPO与CB[7]分离并恢复高反应活性以驱动底物的快速氧化。TEMPO的适应性反应活性引发了催化循环的整体优化并大大提高了反应的转化率。这项工作突出了动态非共价相互作用在调节反应中间体活性方面的独特优势,这可能为超分子催化开辟新的视野。