Xu Yan-Yan, Liu Hong-Kun, Wang Ze-Kun, Song Bo, Zhang Dan-Wei, Wang Hui, Li Zhiming, Li Xiaopeng, Li Zhan-Ting
Department of Chemistry, Shanghai Key Laboratory of Molecular Catalysis and Innovative Materials, Fudan University, 2205 Songhu Road, Shanghai 200438, China.
Department of Chemistry, Northwestern University, 2145 Sheridan Road, Evanston, Illinois 60208, United States.
J Org Chem. 2021 Mar 5;86(5):3943-3951. doi: 10.1021/acs.joc.0c02792. Epub 2021 Feb 18.
Two organic cages have been prepared in situ in water through the 2 + 3 hydrazone coupling of two pyridinium-derived trialdehydes and oxalohydrazide. The highly water-soluble cages encapsulate and solubilize linear neutral molecules. Such encapsulation has been applied for the promotion of both two- or three-component hydrazone condensation in water. For two-component reactions, the yields of the resulting monohydrazones are increased from 5-10 to 90-96%. For three-component reactions of hydrazinecarbohydrazide with 11 aromatic aldehydes, in the presence of the organic cages, the bihydrazone products can be produced in 88-96% yields. In contrast, without the promotion of the organic cages, 9 of the reactions do not afford the corresponding dihydrazone product.
通过两种吡啶衍生的三醛与草酰肼的2 + 3腙偶联反应,在水中原位制备了两种有机笼。这种高度水溶性的笼子能够包封线性中性分子并使其溶解。这种包封作用已被用于促进水中的两组分或三组分腙缩合反应。对于两组分反应,所得单腙的产率从5 - 10%提高到90 - 96%。对于肼基碳酰肼与11种芳香醛的三组分反应,在有机笼存在的情况下,双腙产物的产率可达88 - 96%。相比之下,在没有有机笼促进作用的情况下,9个反应无法得到相应的双腙产物。