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Titlebook: Organic Electronics; Tibor Grasser,Gregor Meller,Ling Li Book 2010 Springer-Verlag Berlin Heidelberg 2010 Compound.Drift velocity.Organic

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Effective Temperature Models for the Electric Field Dependence of Charge Carrier Mobility in Tris(8conductor devices. In this chapter we review effective temperature models that combine both the temperature and electric field dependence of the charge carriermobility into a single parameter – the effective temperature. Although effective temperature models were originally developed for use in diso
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Bio-Organic Optoelectronic Devices Using DNA,cs. For preparing high optical quality thin films of DNA, a method using DNA with cationic surfactants such as DNA–cetyltrimethylammonium, CTMA has been applied. This process enhances solubility and processing for thin film fabrication. These DNA–CTMA complexes resulted in the formation of self-asse
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Low-Cost Submicrometer Organic Field-Effect Transistors,e carrier mobility values can hardly exceed 0.01–0.1 cm. V. s.. For a cut-off frequency above 100 kHz { to} 1 MHz, relevant for broader applications, and an operation voltage below 10 V, the channel length of the transistors should be smaller than 1–10 μm. Considering inevitable parasitic capacitanc
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Organic Field-Effect Transistors for CMOS Devices,take full advantage of organic electronics, low power consumption is mandatory, requiring the use of a complementary metal oxide semiconductor (CMOS) like technique. To realize CMOS-devices p-type and n-type organic field-effect transistors on one substrate have to be provided. Here, the latest conc
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Theories of the Charge Transport Mechanism in Ordered Organic Semiconductors,of computational chemistry to the understanding of the parameters that determine the charge mobility in bulk semiconductors are analyzed in detail. The effect of thermal motions on the electronic wavefunction and the effect of strong off-diagonal electron–phonon coupling are identified as essential
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Book 2010 an alternating bonding structure at the end of the 1970s, the academic and industrial research on hydrocarbon-based semiconducting materials and devices has made encouraging progress. The strengths of semiconducting polymers are currently mainly unfolding in cheap and easily assembled thin ?lm tran
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0065-3195 s, each written by the world renowned experts.Still valid anDear Readers, Since the ground-breaking, Nobel-prize crowned work of Heeger, MacDiarmid, and Shirakawa on molecularly doped polymers and polymers with an alternating bonding structure at the end of the 1970s, the academic and industrial res
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Interfaces in Organic Field-Effect Transistors, injection is currently considered as at least as crucial as charge transport in the organic semiconductor. In this chapter, the relevant issues associated with the interfaces are developed. Particular attention is paid to the characterization of the interfaces and to models developed to understand and improve their properties.
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