Department of Chemistry , University of Miami , Coral Gables , Miami, Florida 33146 , United States.
Org Lett. 2018 Jul 20;20(14):4187-4190. doi: 10.1021/acs.orglett.8b01497. Epub 2018 Jun 28.
Host cavitands and organic guest molecules independently adsorbed on silica particles when mixed and shaken in the presence of a few drops of water underwent intra- and interparticle migration to form capsular complexes that were not formed either in water or organic solvents. Importance of cavitand migration and tumbling on silica surface was established by demonstrating that covalently linked cavitands do not form capsular complexes. The encapsulated guests exhibited selective photochemistry as they do within an organic capsule in solution.
当在存在少量水的情况下混合并摇晃时,吸附在硅胶颗粒上的主体空腔和有机客体分子会发生内-颗粒和颗粒间的迁移,形成在水中或有机溶剂中都不会形成的胶囊配合物。通过证明键合空腔不能形成胶囊配合物,确立了空腔在硅胶表面上的迁移和翻滚的重要性。包封的客体表现出选择性光化学性质,就像它们在溶液中的有机胶囊中一样。