Self-Assembly of Charged Supramolecular Sandwiches Formed by Corannulene Tetraanions and Lithium Cations
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The reduction of corannulene (C20H10) with excess lithium metal in a strong chelating O-donor solvent, diglyme, leads to the formation of the highly reduced C20H104– anion. However, in contrast to the formation of the sandwich-type supramolecular aggregate [Li5(C20H104–)2]3– observed in THF, corannulene tetraanions and lithium counterions in diglyme form only contact ion pairs according to 7Li NMR spectroscopy. Furthermore, the slow dissociation of the premade sandwich [Li5(C20H104–)2]3– in neat diglyme has been demonstrated by multinuclear NMR spectroscopy. In contrast, the [Li5(C20H104–)2]3– sandwich can be crystallized from the THF/diglyme mixture as the new crystalline product [Li(THF)2(diglyme)]+[Li2(THF)(diglyme)//Li5(C20H104–)2]−, showing a complex 1D hybrid architecture according to the single-crystal X-ray diffraction study.



