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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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Synthetic Aspects of Iridoid Chemistry,es are reviewed showing the benefits of different approaches to material and device design where energy efficiency and high temperature operation are the principal concerns. Finally, semiconductor lasers and LEDs for the visible spectral range are briefly introduced in terms of the most important issues related to their performance.
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Book 2015tors to insulators to metal/insulator nanocomposites, both inorganic and organic. Among the featured applications are components of solar cells, detectors, light-emitting devices, scintillators and materials with novel optical properties. Excitonic properties are particularly important in organic ph
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Photocarrier Recombination Dynamics in Perovskite Semiconductor SrTiO,,e near-surface oxygen-deficient region in SrTiO. bulk crystals and nanoparticles. PL spectra of other d.-type perovskite semiconductors, KTaO., BaTiO., LiNbO., and LiTaO., are also discussed in comparison with SrTiO..
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Organic and Excitonic Solar Cells,in OSCs through light trapping effects. After a brief overview of basics of OSCs, the charge transport properties, different approaches including incorporating metal nanoparticles and surface plasmonic structures to enhancethe absorption in OSCs will be discussed. Apart from the encouraging results
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Electronic Properties of Noncrystalline Semiconductors,energies is larger than in crystalline semiconductors. The application of the new time-dependent exciton-spin-orbit-photon interaction derived recently by the author has been reviewed for harvesting the radiative emission from triplet excitons, where the traditional perturbation approach cannot be a
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Excitonic Processes in Organic Semiconductors and Their Applications in Organic Photovoltaic and Lients and exciton diffusion lengths for singlet and triplet excitons, respectively. The newly derived interaction operator between charge transfer exciton and molecular vibration energy is used to understand the mechanism and derive the rate of dissociation of excitons into free charge carriers. The
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