Aromaticity and Antiaromaticity in Oligocyclic Annelated Five-Membered Ring Systems

The aromaticity and antiaromaticity of oligocyclic annelated five-membered ring systems, pentalene (1), acepentalene (2), dicyclopenta[cd,gh]pentalene (3), and related compounds, have been evaluated computationally using density functional theory (B3LYP/6-31G*). The nucleus-independent chemical shif...

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Veröffentlicht in:Journal of organic chemistry 1998-05, Vol.63 (10), p.3417-3422
Hauptverfasser: Zywietz, Tosja K, Jiao, Haijun, Schleyer, Paul v. R, de Meijere, Armin
Format: Artikel
Sprache:eng
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Zusammenfassung:The aromaticity and antiaromaticity of oligocyclic annelated five-membered ring systems, pentalene (1), acepentalene (2), dicyclopenta[cd,gh]pentalene (3), and related compounds, have been evaluated computationally using density functional theory (B3LYP/6-31G*). The nucleus-independent chemical shifts (NICS) and magnetic susceptibility exaltations (Λ) of these unusual cross-conjugated π systems indicate 1 and 2 with 8 and 10 π electrons, respectively, to be antiaromatic. In contrast, 3, with 12 π electrons, is aromatic. Although the rings are not identical, 3 has a more delocalized electronic structure than 1 and 2. The dianions of 1−3 have delocalized structures and are aromatic. The magnetic criteria show the dications of 1 and 2 to be aromatic but the dication of 3 to be antiaromatic. The fused ring systems 2 and 3 are nonplanar. The calculated inversion barriers of acepentalene (2) and its free dianion 2 2- are 7.1 and 5.4 kcal/mol, respectively.
ISSN:0022-3263
1520-6904
DOI:10.1021/jo980089f