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Titlebook: Electronic Properties of Polymers; Orientation and Dime Hans Kuzmany,Michael Mehring,Siegmar Roth Conference proceedings 1992 Springer-Verl

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Optical Transitions and Photoconductivity in Oriented Trans-Polyacetylenenclude the interchain electronic coupling between zig-zag, dimerized polyenic chains. The results of the present model are compared with the experimental data on the pump anisotropy of the photocurrent.
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A Microscopic Picture for Very High Conductivities in Polymersivity temperature dependence (including the peak sometimes seen at higher temperatures and localization effects at very low temperatures). This picture involves highly anisotropic metallic conduction (with intrinsic conductivities exceeding 10. S/cm) combined with fluctuation-induced tunneling through chain defects.
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https://doi.org/10.1007/978-3-642-51738-9 conducting polymers has developed to the stage at which their first use in technology has already taken place. Early problems associated with insolubility and environmental stability still exist, but have been sometimes overcome for many potential applications. The prototype conducting polymer, pol
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https://doi.org/10.1007/978-3-662-48778-5g. It is pointed out that the semiconducting and ”metallic” phases differ by an order of magnitude in their respective energy states. This is observed in the evolution of the soliton lattice from a periodic array of well separated kinks and antikinks to either a small amplitude bond-order wave or a
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https://doi.org/10.1007/978-3-322-85741-5on to the perpendicular interchain hopping of the π-electrons. Using a supersymmetry path integral technique the electronic density of states is calculated. We find that the band edge structures are smeared out and the dimerization amplitude is decreased.
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