Laboratory for Chemistry and Life Science, Institute of Innovative Research, Tokyo Institute of Technology, 4259 Nagatsuta, Midori-ku, Yokohama 226-8503, Japan.
Department of Chemistry, Indian Institute of Technology Madras, Chennai 600036, India.
Nat Commun. 2017 Jun 28;8:15914. doi: 10.1038/ncomms15914.
Mimicking biological structures such as fruits and seeds using molecules and molecular assemblies is a great synthetic challenge. Here we report peanut-shaped nanostructures comprising two fullerene molecules fully surrounded by a dumbbell-like polyaromatic shell. The shell derives from a molecular double capsule composed of four W-shaped polyaromatic ligands and three metal ions. Mixing the double capsule with various fullerenes (that is, C, C and ScN@C) gives rise to the artificial peanuts with lengths of ∼3 nm in quantitative yields through the release of the single metal ion. The rational use of both metal-ligand coordination bonds and aromatic-aromatic π-stacking interactions as orthogonal chemical glue is essential for the facile preparation of the multicomponent, biomimetic nanoarchitectures.
使用分子和分子组装来模拟生物结构,如水果和种子,是一个巨大的合成挑战。在这里,我们报告了由两个富勒烯分子组成的花生形纳米结构,它们完全被哑铃状的多环芳烃壳包围。该壳源自由四个 W 型多环芳烃配体和三个金属离子组成的分子双胶囊。通过释放单个金属离子,将双胶囊与各种富勒烯(即 C、C 和 ScN@C)混合,以定量产率得到长度约为 3nm 的人工花生。合理利用金属-配体配位键和芳香-芳香π堆积相互作用作为正交化学胶是制备多组分仿生纳米结构的关键。