Institut de Química Computacional i Catàlisi and Departament de Química, Universitat de Girona, Campus Montilivi, Girona, Catalonia 17071, Spain.
1] Institut de Química Computacional i Catàlisi and Departament de Química, Universitat de Girona, Campus Montilivi, Girona, Catalonia 17071, Spain [2] Serveis Tècnics de Recerca (STR), Universitat de Girona, Parc Cinetífic i Tecnològic, Girona, Catalonia 17003, Spain.
Nat Commun. 2014 Nov 26;5:5557. doi: 10.1038/ncomms6557.
Since fullerenes are available in macroscopic quantities from fullerene soot, large efforts have been geared toward designing efficient strategies to obtain highly pure fullerenes, which can be subsequently applied in multiple research fields. Here we present a supramolecular nanocage synthesized by metal-directed self-assembly, which encapsulates fullerenes of different sizes. Direct experimental evidence is provided for the 1:1 encapsulation of C60, C70, C76, C78 and C84, and solid state structures for the host-guest adducts with C60 and C70 have been obtained using X-ray synchrotron radiation. Furthermore, we design a washing-based strategy to exclusively extract pure C60 from a solid sample of cage charged with a mixture of fullerenes. These results showcase an attractive methodology to selectively extract C60 from fullerene mixtures, providing a platform to design tuned cages for selective extraction of higher fullerenes. The solid-phase fullerene encapsulation and liberation represent a twist in host-guest chemistry for molecular nanocage structures.
由于富勒烯可以从富勒烯烟尘中大量获得,因此人们已经做出了巨大的努力来设计有效的策略以获得高纯度的富勒烯,随后可以将其应用于多个研究领域。在这里,我们展示了一种通过金属导向自组装合成的超分子纳米笼,该纳米笼可以封装不同大小的富勒烯。提供了 C60、C70、C76、C78 和 C84 以 1:1 封装的直接实验证据,并使用同步加速器 X 射线辐射获得了与 C60 和 C70 的主体-客体加合物的固态结构。此外,我们设计了一种基于洗涤的策略,从充满富勒烯混合物的笼状固体样品中专门提取纯 C60。这些结果展示了一种从富勒烯混合物中选择性提取 C60 的有吸引力的方法,为设计用于选择性提取更高富勒烯的调谐笼提供了平台。固相富勒烯封装和释放代表了分子纳米笼结构中主客体化学的一个转折点。