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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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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 the material investigated is deduced.
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determined and substantial results have been achieved in the theoretical treatment of many questions. However, the range of investigations is so broad that it is impossible to discuss all branches fully in a short monograph. In fact, the chemist synthe­ sizing systems with conjugated bonds and stud
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Preparation, Constructive Properties, and Main Electrical Characteristics of Organic Semiconductorss and polymers with a large number of conjugated bonds, charge-transfer complexes in which, owing to a definite structure, conditions are created for the delocalization of an electron, stable free radicals, and also some biopolymers (including proteins) the conductivity of which can be explained by a nonionic mechanism.
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Book 1970d and substantial results have been achieved in the theoretical treatment of many questions. However, the range of investigations is so broad that it is impossible to discuss all branches fully in a short monograph. In fact, the chemist synthe­ sizing systems with conjugated bonds and studying their
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The Surface of Organic Semiconductors, are capable of increasing the concentration of electrons in the surface layer and others of decreasing it. The process of adsorption may be considered in two ways: either as a creation of donor (acceptor) impurities at the surface [2, 3] or as the formation of charge-transfer complexes [4].
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