TY - JOUR
T1 - Chain-Length Dependence of Electronic and Electrochemical Properties of Conjugated Systems
T2 - Polyacetylene, Polyphenylene, Polythiophene, and Polypyrrole
AU - Brédas, J. L.
AU - Silbey, R.
AU - Boudreaux, D. S.
AU - Chance, R. R.
PY - 1983/10/1
Y1 - 1983/10/1
N2 - he valence effective Hamiltonian (VEH) technique is used to compute ionization potentials, optical transition energies, and electron affinities of oligomers and polymers in four conjugated systems: polyacetylene, poly(p-phenylene), polythiophene, and polypyrrole. The theoretical results compare very favorably with experimental data on gas-phase ionization potentials, optical absorption, and electrochemical redox potentials. The latter case is especially important, and the calculated oxidation and reduction potentials are in remarkably good agreement with experiment. For polyacetylene the predicted oxidation potential is 0.4 V vs. SCE, and the predicted reduction potential is -1.1 V, both of which are in good agreement with experimentally observed oxidation and reduction onsets. In these systems, the electronic and electrochemical properties predicted by VEH theory for the oligomers extrapolate to those of the polymer with an inverse chain-length dependence.
AB - he valence effective Hamiltonian (VEH) technique is used to compute ionization potentials, optical transition energies, and electron affinities of oligomers and polymers in four conjugated systems: polyacetylene, poly(p-phenylene), polythiophene, and polypyrrole. The theoretical results compare very favorably with experimental data on gas-phase ionization potentials, optical absorption, and electrochemical redox potentials. The latter case is especially important, and the calculated oxidation and reduction potentials are in remarkably good agreement with experiment. For polyacetylene the predicted oxidation potential is 0.4 V vs. SCE, and the predicted reduction potential is -1.1 V, both of which are in good agreement with experimentally observed oxidation and reduction onsets. In these systems, the electronic and electrochemical properties predicted by VEH theory for the oligomers extrapolate to those of the polymer with an inverse chain-length dependence.
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U2 - 10.1021/ja00360a004
DO - 10.1021/ja00360a004
M3 - Article
AN - SCOPUS:0021093572
SN - 0002-7863
VL - 105
SP - 6555
EP - 6559
JO - Journal of the American Chemical Society
JF - Journal of the American Chemical Society
IS - 22
ER -