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Titlebook: Electronic Processes in Organic Electronics; Bridging Nanostructu Hisao Ishii,Kazuhiro Kudo,Nobuo Ueno Book 2015 Springer Japan 2015 Diffus

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https://doi.org/10.1007/978-3-030-05078-8unctional devices, namely molecular nano-wire devices and metal-insulator transition devices, are described as well. Finally, the potential for the development of flexible organic electronic devices will be discussed.
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The Large Monetary Union of Two Countriesd diffuse across the C–C bonds with large barriers around 0.4–0.8 eV. On the other hand, the large negativity atoms like Au produce covalent-like bonds with π-orbitals of carbons, and prefer to move along the C–C bonds with small barriers less than 0.2 eV. These features are completely different from those of inorganic systems like Si.
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Geldwerterhöhung oder Geldentwertung?f small and large polarons. Taking into account the static disorder, which inevitably exists in molecular crystals, we present the temperature dependence of charge-transport properties in competition among the thermal fluctuation of molecular motion, polaron formation, and static disorder.
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Pentacene Becomes Mott–Hubbard Insulator by Potassium Doping from the Mott–Hubbard insulator formed by electron transfer from K atom to Pn LUMO. The impact of K doping on the energy level alignment was discussed in terms of coexistence of K.Pn. Mott–Hubbard insulator and Pn SC film.
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Fabrication and Characterization of Organic Devicesunctional devices, namely molecular nano-wire devices and metal-insulator transition devices, are described as well. Finally, the potential for the development of flexible organic electronic devices will be discussed.
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Theory of Metal-Atom Diffusion in Organic Systemsd diffuse across the C–C bonds with large barriers around 0.4–0.8 eV. On the other hand, the large negativity atoms like Au produce covalent-like bonds with π-orbitals of carbons, and prefer to move along the C–C bonds with small barriers less than 0.2 eV. These features are completely different from those of inorganic systems like Si.
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Book 2015es. Furthermore, innovative experimental techniques, e.g., ultrahigh sensitivity photoelectron spectroscopy, photoelectron yield spectroscopy, spin-resolved scanning tunneling microscopy (STM), and a material processing method with optical-vortex and polarization-vortex lasers, are introduced. As th
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