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Titlebook: Excitonic and Photonic Processes in Materials; Jai Singh,Richard T. Williams Book 2015 Springer Science+Business Media Singapore 2015 DFT

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https://doi.org/10.1007/978-3-7091-8815-6es. The efficiencies and lifetimes of OSCs are not yet high enough for them to be commercially viable, but significant research effort has been devoted to improving the performance of OSCs through materials innovation and new device designs. It is known that the optical absorption in organic solar c
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S. Huneck,W. Herz,H. Falk,R. E. Mooreomposite (hybrid) structures. The number of possible nanocomposites that can be built from already existing nanostructures is simply enormous. A significant amount of research on nanocomposites has been devoted to the study of exciton-plasmon interactions in metal-semiconductor nanostructures, which
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https://doi.org/10.1007/978-3-7091-8703-6 four scintillators, namely NaI:Tl, BaF., Gd.SiO.:Ce (GSO) and LaCl.:Ce. The objective is to present a comprehensive theoretical study of the nonproportionality occurring in the yield of inorganic scintillators. This nonproportionality produces low energy resolution in most scintillators known to da
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https://doi.org/10.1007/978-3-7091-8759-3from these materials. The mechanisms of excitonic absorption, diffusion and dissociation of excitons at the donor-acceptor interface are presented in bulk-heterojunction organic solar cells. After the formation of Frenkel excitons upon photon absorption, excitons must diffuse to the interface to dis
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978-981-10-1153-5Springer Science+Business Media Singapore 2015
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