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Titlebook: Organic Semiconductors and Biopolymers; Leonid I. Boguslavskii,Anatolii V. Vannikov Book 1970 Springer Science+Business Media New York 197

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Connection Between the Electrical and Paramagnetic Characteristics of Polymeric Semiconductors,f polymers (particularly synthetic ones) are obtained only in pulverulent form. At the present time it is practically impossible to obtain polycrystalline polymers (and, all the more, monocrystals) since polymers with conjugated bonds usually contain an amorphous phase. With the exception of some in
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Mechanism of Conduction in Organic Semiconductors,m of conduction is generally the determination of n and . appearing in the expression for conductivity . = en.. In inorganic semiconductors, this is done by measuring the Hall effect. Then, by studying the dependence of . and n on the temperature and other parameters, the mechanism of conduction in
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Biology and Organic Semiconductors,rdan [1] and in 1941 Szent-Györgyi [2] suggested that proteins may possess the nature of semiconductors. Subsequent biophysical investigations of biopolymers at the molecular level led to the conviction that the phenomena taking place in ordered biological structures cannot be interpreted unless in
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Prospects of the Practical Application of Organic Semiconductors,At the present time, hundreds of new organic semiconducting materials have been obtained [1–3]. In this chapter we shall consider those characteristics of these materials that can be used in various branches of power engineering and radioelectronics [4].
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