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- W994664908 abstract "Since the discovery of light emitting properties on phenyl–based organic semiconductors in the 90’s, considerable efforts have been devoted to study the photophysical applications of conjugated polymers for development of new technologies in organic optoelectronic devices. The potential advantages in terms of ease of synthesis, flexibility, low cost, and large-area capability make the organic semiconductors attractive for the electronics industry, particularly when it comes to the promising development of a new display technology. There are many potential applications such as Organic Solar Cells, Thin–Film Transistors, and Organic Light Emitting Diodes (OLEDs). The recombination dynamics between quasi–particles, in order to generate excited species, has been identified as an important process in these applications. Furthermore, the products arising from the recombination mechanism as well as their final yields, have been shown to be directly related to the devices performance. One of the significant challenges in the science and technology of organic semiconductors is the characterization of the temperature and impurity effects on the generation and recombination of quasi–particles. Thus, understanding how such effects play the role of changing the formation dynamics of new products from the recombination process is of fundamental importance to the development of more efficient optoelectronic devices. In this thesis, the recombination dynamics between quasi–particles in organic semiconductors is numerically investigated under the influence of impurities, Coulomb interactions, temperature and an external electric field. The aim of this work is to give a physical picture of the products and their yields derived from the recombination of different kinds of quasi–particles in organic semiconductors, when the above–mentioned effects are considered and contribute to the understanding of these important processes, which may provide guidance to improve, for example, the electroluminescence yields in OLEDs." @default.
- W994664908 created "2016-06-24" @default.
- W994664908 creator A5021043645 @default.
- W994664908 creator A5080832147 @default.
- W994664908 date "2017-09-26" @default.
- W994664908 modified "2023-09-23" @default.
- W994664908 title "Generation and recombination of excited states in organic semiconductors" @default.
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- W994664908 doi "https://doi.org/10.26512/2015.01.t.18311" @default.
- W994664908 hasPublicationYear "2017" @default.
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