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Titlebook: Electrical and Related Properties of Organic Solids; R. W. Munn,Andrzej Miniewicz,Bogdan Kuchta Book 1997 Springer Science+Business Media

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Photoconductivity of Polymers: Influence of the Photoinduced Charge Transfer,istors, low-cost photovoltaic cells, electrophotographic recording systems, as well as in laser printer systems. These potential applications have stimulated interest in the studies of electronic structure, charge carrier photogeneration and transport. The charge photogeneration in organics has been
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Electroluminescence in Polymeric Systems with Defined Chemical and Morphological Structure,the generation of light from charge carrier recombination. Emphasis is put on charge injection, photoluminescence efficiency, color tuning, control of polarization and microcavity effects. The results show, that the macroscopic device parameters are closely related to the chemical structure of the c
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Theoretical Characterization of Electroluminescence in Semiconducting Conjugated Polymers and Oligons of semiconducting conjugated polymers and oligomers, ., their use as active layers in light-emitting diodes (LEDs). We present an overview of the results of recent theoretical studies that we have performed on oligomers representative of polyparaphenylenevinylene and polythiophene. We mostly deal
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Calculation of Charge-Transfer States in Molecular Crystals,consistent polarization field (SCPF) method or by a Fourier-transform method. Only the SCPF method can deal with relaxed and disordered lattices; it has been revised slightly to treat molecules as a set of submolecules and to treat anisotropic crystals better. The Fourier-transform method gives the
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Molecular Electronic Relaxation in Organic Solids,ircumstances. In the case of organic molecular solids, their electronic structure is basically derived from those of their component molecules. It is therefore important to consider the molecular electronic relaxation in solids for the study of, in particular, electronic properties of organic solids
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