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In the field of organic semiconductors researchers and manufacturers are faced with a wide range of potential molecules. This work presents concepts for simulation-based predictions of material characteristics starting from chemical stuctures. The focus lies on charge transport - be it in microscopic models of amorphous morphologies, lattice models or large-scale device models.An extensive introductory review, which also includes experimental techniques, makes this work interesting for a broad readership. Contents: Organic Semiconductor DevicesExperimental TechniquesCharge Dynamics at Dierent ScalesComputational MethodsEnergetics and Dispersive TransportCorrelated Energetic LandscapesMicroscopic, Stochastic and Device SimulationsParametrization of Lattice ModelsDrift-Diusion with Microscopic Link
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In recent decades, the way human beings interact with technology has been significantly transformed. In our daily life, ever fewer manually controlled devices are used, giving way to automatized houses, cars, and devices. A significant part of this technological revolution relies on signal detection and evaluation, placing detectors as core devices for further technological developments. This book introduces a versatile contribution to achieving light sensing: Organic Semiconductor Devices for Light Detection. The text is organized to guide the reader through the main concepts of light detection, followed by a introduction to the semiconducting properties of organic molecular solids. The sources of non-idealities in organic photodetectors are presented in chapter 5, and a new device concept, which aims to overcome some of the limitation discussed in the previous chapters, is demonstrated. Finally, an overview of the field is given with a selection of open points for future investigation.
Electronics --- Applied physical engineering --- photonics --- halfgeleiders --- Organic semiconductors.
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Organic semiconductors --- Optoelectronics. --- Electric properties. --- Optical properties. --- Electronics --- Photonics --- Semiconductors --- Organic semiconductors. --- Photovoltaic power generation. --- Photovoltaic energy conversion --- Photovoltaics --- Direct energy conversion --- Solar energy --- Solar batteries
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Organic semiconductors. --- Exciton theory. --- Electron-hole pair theory --- Excitons, Theory of --- Electrons --- Photons --- Quantum theory --- Solids --- Transport theory --- Semiconductors
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Organic field-effect transistors. --- Transistor circuits. --- Electronic circuits --- Transistors --- OFETs (Transistors) --- Organic FETs (Transistors) --- Field-effect transistors --- Organic semiconductors --- Thin film transistors
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Ce livre expose les bases de l lectronique organique, aussi dite plastique ou souple, par opposition l lectronique conventionnelle. Il pr sente les bases th oriques physico-chimiques de ce domaine: th orie des mat riaux unidimensionnels; th orie des semiconducteurs organiques; d localisation possible des lectrons dans ces mat riaux et leur bande d absorption/ mission, etc. Il d crit d autre part les divers composants lectroniques/opto lectroniques auxquels ces mat riaux organiques ont pu donner naissance et qui sont actuellement commercialis?'s (ou pr ts l tre) tels que: les crans angles de vu
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Organic Field Effect Transistors discusses the fundamental mechanisms that apply to OFETs fabrication, operation, and characterization. This unique book presents the state-of-the-art in organic field effect transistors (OFETs) with a particular focus on the materials and techniques useful for making integrated circuits. It also addresses many of the practical issues associated with OFET fabrication, characterization, modeling, and integration with other devices. Topics covered include: Chemical physics of organic semiconductor operation Major classes of OFET materials Basic processing of OFETs Modeling and device characterization The text contains significant material which provides practical advice for both beginning and experienced researchers in OFETs. Special features of Organic Field Effect Transistors include detailed laboratory procedures in chapters three and four, recipes and mask design guidance in the appendicies, and an extensive analysis of both traditional and emerging electrical characterization procedures in chapter six. With research in organic semiconductors overlapping with material science, chemistry and electrical engineering Organic Field Effect Transistors is a valuable reference that provides a standard language to unify the field.
Organic field-effect transistors. --- Organic semiconductors -- Congresses. --- Organic semiconductors. --- Transistors. --- Organic field-effect transistors --- Electrical Engineering --- Electrical & Computer Engineering --- Engineering & Applied Sciences --- Field-effect transistors. --- Unipolar transistors --- OFETs (Transistors) --- Engineering. --- Organic chemistry. --- Electronic circuits. --- Optical materials. --- Electronic materials. --- Circuits and Systems. --- Organic Chemistry. --- Optical and Electronic Materials. --- Field-effect transistors --- Organic semiconductors --- Transistors --- Systems engineering. --- Chemistry, Organic. --- Optics --- Materials --- Organic chemistry --- Chemistry --- Engineering systems --- System engineering --- Engineering --- Industrial engineering --- System analysis --- Design and construction --- Electron-tube circuits --- Electric circuits --- Electron tubes --- Electronics --- Electronic materials
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