A nanographene-fused expanded carbaporphyrin () and its BF complex () were synthesized. Single-crystal X-ray structures revealed that and are connected by two hexa--hexabenzocoronene (HBC) units and two dipyrromethene or BODIPY units, respectively. As prepared, and both show nonaromatic character with figure-of-eight carbaoctaphyrin (1.1.1.0.1.1.1.0) cores and adopt tweezers-like conformations characterized by a partially confined space between the two constituent HBC units. The distance between the HBC centers is >10 Å, while the dihedral angles between the two HBC planes are 30.5 and 35.2° for and , respectively. The interactions between and and fullerene C were studied both in organic media and in the solid state. Proton NMR spectral titrations of and with C revealed a 1:1 binding mode for both macrocycles. In toluene-, the corresponding binding constants were determined to be 1141 ± 17 and 994 ± 10 M for and , respectively. Single-crystal X-ray diffraction structural analyses confirmed the formation of 1:1 fullerene inclusion complexes in the solid state. The C guests in both complexes are found within triangular pockets composed of two HBC units from the tweezers-like receptor most closely associated with the bound fullerene, as well as an HBC unit from an adjacent host. Femtosecond transient absorption measurements revealed subpicosecond ultrafast charge separation between (and ) and C in the complexes. To the best of our knowledge, the present report provides the first example wherein a nanographene building block is incorporated into the core of a porphyrinic framework.
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http://dx.doi.org/10.1021/jacs.3c10122 | DOI Listing |
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