Electronic structure of polyparaphenylene vinylene copolymers: The relationship to light-emitting characteristics
- 15 February 1994
- journal article
- research article
- Published by AIP Publishing in The Journal of Chemical Physics
- Vol. 100 (4) , 3301-3306
- https://doi.org/10.1063/1.466421
Abstract
We investigate theoretically the electronic structure of regular and statistical copolymer chains containing segments of poly(p‐phenylene vinylene) (PPV) and its dimethoxy‐substituted derivative, poly(2,5‐dimethoxy‐1,4‐phenylene vinylene) (DMeOPPV). Such copolymers have recently been shown to present remarkable electroluminescence properties. The calculations on the copolymer chains are performed on the basis of the negative factor counting technique coupled to the valence effective Hamiltonian method. The eigenfunctions of the upper occupied and lower unoccupied levels are calculated explicitly using the inverse iteration technique, and the degree of localization is determined via the inverse participation number approach. It is shown that the electronic structure of PPV/DMeOPPV copolymers is strongly affected by both the concentrations and relative locations of the parent polymer moieties along the chains. The appearance of clusters of dimethoxy‐substituted units leads to energy gaps that are smaller than those of the parent polymers and to a spatial localization of the upper occupied levels within the DMeOPPV clusters, while the lower unoccupied levels remain smoothly delocalized over the unsubstituted regions. Our results thus indicate that electron–hole recombination processes should take place preferentially at the interfaces between PPV and DMeOPPV segments. The evolution of the PPV/DMeOPPV copolymerband gaps as a function of the concentration in dimethoxy substituted rings is compared to experimental photoluminescence and absorption data.Keywords
This publication has 27 references indexed in Scilit:
- Chemical tuning of the electronic properties of poly(p-phenylenevinylene)-based copolymersJournal of the American Chemical Society, 1993
- Alternate donor-acceptor small-band-gap semiconducting polymers; Polysquaraines and polycroconainesSynthetic Metals, 1993
- Photoinduced absorption and photoluminescence in poly(2,5-dimethoxy-p-phenylene vinylene)Physical Review B, 1992
- Fine tuning of the band gap in conjugated polymers via control of block copolymer sequencesThe Journal of Chemical Physics, 1992
- Influence of polymerization irregularities on the electronic properties of polythiopheneThe Journal of Chemical Physics, 1991
- Effects of geometrical disorder on the electronic structure of alkyl-substituted polythiophenesSynthetic Metals, 1991
- A nonempirical effective Hamiltonian technique for polymers: Application to polyacetylene and polydiacetyleneThe Journal of Chemical Physics, 1981
- A new general methodology for deriving effective Hamiltonians for atoms and molecules. Application to the transferability of atomic potentials in the hydrocarbon seriesThe Journal of Chemical Physics, 1980
- A new general methodology for deriving transferable atomic potentials in moleculesThe Journal of Chemical Physics, 1979
- Localization of normal modes in vitreous silica, germania and beryllium fluorideJournal of Physics C: Solid State Physics, 1970