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Titlebook: Highly Conducting One-Dimensional Solids; Jozef T. Devreese,Roger P. Evrard,Victor E. Doren Book 1979 Springer Science+Business Media New

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Charge-Density Wave Phenomena in One-Dimensional Metals: TTF-TCNQ and Related Organic Conductors,ocus primarily on TTF-TCNQ as a one-dimensional system; the molecular properties will be brought in as a means of understanding, on a microscopic basis, the origin of the competing intermolecular and intramolecular interactions that lead ultimately to the metallic solid.
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imensional or quasi-one-dimensional systems that this subject began to attract considerable attention. This has been due in part to the search for high­ temperature superconductivity and the possibility of reaching this goal with quasi-one-dimensional substances. A period of intense activity began i
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Introduction to Highly Conducting One-Dimensional Solids,-nitrogen polymer [(SN).], have been discovered whose microscopic structure consists, to a greater or lesser extent, of a collection of weakly coupled, highly conducting chains. Such materials are called quasi-one-dimensional metals and they are of interest because nearly one-dimensional metals are
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X-Ray and Neutron Scattering from One-Dimensional Conductors,ure 1.) from a fascinating compound, K.Pt(CN).Br.·.H.O(KCP). Besides the usually observed reflections of a rotating crystal pattern, it showed continuous diffuse satellite lines at about one-third the reciprocal lattice spacing from the layer lines of Bragg spots. It was the beginning of a long succ
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Perturbation Approach to Lattice Instabilities in Quasi-One-Dimensional Conductors,f the electron-phonon interaction in a highly anisotropic electronic system. The theory adopted here to account for the electronic and lattice properties is essentially that of a conventional field-theoretic treatment of the electron-phonon system.. The model to be borne in mind is a system of condu
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