Versatile synthesis and enlargement of functionalized distorted heptagon-containing nanographenes.
Irene R MárquezNoelia FuentesCarlos M CruzVirginia Puente-MuñozLia SotorriosM Luisa MarcosDuane Choquesillo-LazarteBlanca BielLuis CrovettoEnrique Gómez-BengoaM Teresa GonzálezRuben MartinJuan M CuervaAraceli G CampañaPublished in: Chemical science (2016)
Highly distorted polycyclic aromatic hydrocarbons (PAHs) are predicted to be attractive goals in nanoscience owing to the new properties they can exhibit. We have shown that a variety of functionalized distorted heptagon-containing nanographenes can be easily prepared from simple building blocks by a sequence of Co-catalyzed cyclotrimerization and cyclodehydrogenation reactions. The versatility of this strategy allows easy subsequent enlargement of these nanostructures by Ni-catalyzed cross-coupling and final cyclodehydrogenation reactions. Soluble extended distorted nanographenes 1 and 2 containing heptagon and an edge-shared pentagon-heptagon combination have been synthesized. High distortion of the polycyclic backbone of 2 caused by non-hexagonal rings and a helicene moiety was confirmed by X-ray crystallography. Experimental data reveal promising optical and electronic properties for distorted PAHs with long fluorescence lifetimes (up to 14.5 ns) and low band gaps (down to 2.27 eV). This straightforward and versatile synthetic strategy, the observed long fluorescence lifetimes and the small optical and electrochemical band gaps for the presented compounds may promote the future implementation of distorted graphene molecules in electronic devices.
Keyphrases
- polycyclic aromatic hydrocarbons
- high resolution
- room temperature
- single molecule
- quantum dots
- primary care
- molecularly imprinted
- gold nanoparticles
- public health
- risk assessment
- human health
- dna methylation
- energy transfer
- electronic health record
- quality improvement
- mass spectrometry
- ionic liquid
- climate change
- zika virus
- global health
- label free