Polyaromatic molecular peanuts.

Yazaki, Kohei; Akita, Munetaka; Prusty, Soumyakanta; Chand, Dillip Kumar; Kikuchi, Takashi; Sato, Hiroyasu; Yoshizawa, Michito · Nat Commun · 2017

basic_science · Level V

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Abstract

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<sub>60</sub>, C<sub>70</sub> and Sc<sub>3</sub>N@C<sub>80</sub>) 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.

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