J. Pacansky, R.J. Waltman, et al.
Symposium on Molecular Modeling of Petroleum Processes and Catalysis 1992
The electrochemical oxidation of aromatic heterocyclic compounds thiophene, pyrrole, and indole and benzenoid and nonbenzenoid polycyclic hydrocarbons azulene, fluorene, and pyrene yield electrically conducting polymers with conductivities of 10-5-10 S/cm. The presence of substituents affects the electrical conductivity of these films and also their electroactive properties. Furthermore, substituents determine whether electropolymerization of these compounds can occur or whether soluble products are formed. The relative importance of these pathways is dependent on the stability of the intermediate radical cation. These effects are investigated by INDO molecular orbital calculations.
J. Pacansky, R.J. Waltman, et al.
Symposium on Molecular Modeling of Petroleum Processes and Catalysis 1992
J. Pacansky, H. Coufal, et al.
International Journal of Radiation Applications and Instrumentation. Part
J. Pacansky, R.J. Waltman, et al.
Journal of Physical Chemistry
R.J. Waltman, H. Zhang, et al.
American Society of Mechanical Engineers, Tribology Division, TRIB