Jia Fei, Schröder Hendrik V, Yang Liu-Pan, von Essen Carolina, Sobottka Sebastian, Sarkar Biprajit, Rissanen Kari, Jiang Wei, Schalley Christoph A
Institut für Chemie und Biochemie , Freie Universität Berlin , Takustraße 3 , 14195 Berlin , Germany.
Department of Chemistry and Shenzhen Grubbs Institute , Southern University of Science and Technology , Xueyuan Boulevard 1088 , Shenzhen 518055 , China.
J Am Chem Soc. 2020 Feb 19;142(7):3306-3310. doi: 10.1021/jacs.9b11685. Epub 2020 Feb 10.
"Naphthocage", a naphthalene-based organic cage, reveals very strong binding (up to 10 M) to aromatic (di)cationic guests, i.e., the tetrathiafulvalene mono- and dication and methyl viologen. Intercalation of the guests between two naphthalene walls is mediated by C-H···O, C-H···π, and cation···π interactions. The guests can be switched into and out of the cage by redox processes with high binding selectivity. Oxidation of the flexible cage itself in the absence of a guest leads to a stable radical cation with the oxidized naphthalene intercalated between and stabilized by the other two. Encapsulated guest cations are released from the cavity upon cage oxidation, paving the way to future applications in redox-controlled guest release or novel stimuli-responsive materials.
“萘笼”是一种基于萘的有机笼状化合物,它对芳香族(二)阳离子客体,即四硫富瓦烯单阳离子和二阳离子以及甲基紫精,表现出非常强的结合能力(高达10 M)。客体在两个萘壁之间的插入是由C-H···O、C-H···π和阳离子···π相互作用介导的。通过具有高结合选择性的氧化还原过程,客体可以进出笼状化合物。在没有客体的情况下,柔性笼状化合物本身的氧化会产生一个稳定的自由基阳离子,氧化的萘插入另外两个萘之间并由它们稳定。笼状化合物氧化时,封装在腔内的客体阳离子会从空腔中释放出来,为未来在氧化还原控制的客体释放或新型刺激响应材料中的应用铺平了道路。