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Ab-Initio Calculations on PPS Oligomers

Published online by Cambridge University Press:  22 February 2011

G.F. Musso
Affiliation:
Istituto di Chimica Industriale, Università di Genova, C.so Europa 30, I–16132 Genova, Italy
P. Piaggio
Affiliation:
Istituto di Chimica Industriale, Università di Genova, C.so Europa 30, I–16132 Genova, Italy
C. Cuniberti
Affiliation:
Istituto di Chimica Industriale, Università di Genova, C.so Europa 30, I–16132 Genova, Italy
G. Dellepiane
Affiliation:
Istituto di Chimica Industriale, Università di Genova, C.so Europa 30, I–16132 Genova, Italy
A. Borghesi
Affiliation:
Dipartimento di Fisica “A.Volta”, Università di Pavia, Via Bassi 6, I–27100 Pavia, Italy
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Abstract

Ab-initio STO-3G* geometry optimizations have been carried out on the first two oligomers of poly (p-phenylene sulfide) (PPS), namely diphenyl sulfide (I) (neutral species, radical cation and dication) and 1, 4-bis(phenylthio)benzene (II) (neutral species and radical cation). Aim of the work is to obtain a first theoretical insight into the geometry relaxation effects occurring in the doping of PPS. The results show that i) geometry changes in the radical cation of I are rather small, being much more pronounced in the dication, and ii) in the radical cation of II a strong geometry modification occurs, the central phenyl ring now lying in the plane of the C-S bonds with a clear quinoid-type structure. These findings are in agreement with our experimental results on the same two oligomers.

Type
Research Article
Copyright
Copyright © Materials Research Society 1991

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References

REFERENCES

[1] Stafström, S. and Brédas, J.L., J.Mol.Struct. (Theochem) 188 (1989) 393 and references thereinGoogle Scholar
[2] Brédas, J.L., Chance, R.R., Silbey, R., Nicolas, G. and Durand, P., J.Chem.Phys. 77. (1982) 371 Google Scholar
[3] Riga, J., Snauwaert, P., Pryck, A. De, Lazzaroni, R., Boutique, J.P., Verbist, J.J., Brédas, J.L., André, J.M. and Taliani, C., Synth.Metals 21 (1987) 223 Google Scholar
[4] Piaggio, P., Giribone, D., Cuniberti, C. and Dellepiane, G. in Advanced Organic Solid State Materials, edited by Chiang, L.Y., Chaikin, P.M. and Cowan, D.O. (Mater.Res.Soc.Proc. 173, Pittsburgh, PA 1990) pp. 459464 Google Scholar
[5] Frisch, M.J., Binkley, J.S., Schlegel, H.B., Raghavachari, K., Melius, C.F., Martin, R.L., Stewart, J.J.P., Bobrowicz, F.W., Rohlfing, C.M., Kahn, L.R., Frees, D.J. De, Seeger, R., side, R.A. White, Fox, D.J., Flender, E.M. and Pople, J.A., Gaussian 86, Carnegie-Mellon Quantum Chemistry Publishing Unit, Pittsburgh, PA, 1984 Google Scholar
[6] Musso, G.F., Piaggio, P., Dellepiane, G. and Borghesi, A., J.Mol.Struct. (Theochem), in pressGoogle Scholar
[7] Tabor, B.J., Magré, E.P. and Boon, J., Eur.Polym. J. 7 (1971) 1127 CrossRefGoogle Scholar
[8] Murray, D.P., Kispert, L.D. and Frommer, J.E., J.Chem.Phys. 83 (1985) 3681.Google Scholar