Center for Superfunctional Materials, Department of Chemistry, Pohang University of Science and Technology, Pohang 790 784, Korea.
Nat Commun. 2013;4:1797. doi: 10.1038/ncomms2758.
Macrocycles based on neutral calixarenes and calixpyrroles have been extensively explored for ion binding, molecular assembly and related applications. Given that only these two types of calix compounds and their analogs are available, the introduction of new forms of widely usable calix macrocycles is an outstanding challenge. Here we report the quadruply/quintuply charged imidazole-based homo-calix compounds, calix[4/5]imidazolium. The noncovalent (C-H)(+)/π(+)-anion interactions of the imidazolium rings with anions inside and outside the cone are the stabilizing factors for crystal packing, resulting in self-assembled arrays of cone-shaped calix-imidazolium molecules. Calix[4]imidazolium senses fluoride selectively even in aqueous solutions. Calix[5]imidazolium recognizes neutral fullerenes through π(+)-π interactions and makes them soluble in water, which could be useful in fullerene chemistry. Not only derivatization and ring expansion of calix[n]imidazolium, but also their utilization in ionic liquids, carbene chemistry and nanographite/graphene exfoliation could be exploited.
基于中性杯芳烃和杯吡咯的大环化合物在离子结合、分子组装及相关应用方面得到了广泛的研究。由于只有这两种类型的杯芳烃化合物及其类似物可用,因此引入新型广泛可用的杯芳烃大环化合物是一项极具挑战性的工作。在此,我们报告了四重/五重正离子咪唑基同杯芳烃化合物,杯[4/5]咪唑鎓。在锥形分子内部和外部,咪唑鎓环的非共价(C-H)(+)/π(+)-阴离子相互作用是晶体堆积的稳定因素,导致锥形杯-咪唑鎓分子的自组装排列。即使在水溶液中,杯[4]咪唑鎓也能选择性地感应氟化物。杯[5]咪唑鎓通过π(+)-π相互作用识别中性富勒烯,并使它们在水中溶解,这在富勒烯化学中可能很有用。不仅杯[n]咪唑鎓的衍生化和环扩张,而且它们在离子液体、卡宾化学和纳米石墨/石墨烯剥落中的应用都可以得到开发。