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Titlebook: High-Tc Superconductivity 1996; Ten Years after the E. Kaldis,E. Liarokapis,K. A. Müller Book 1997 Springer Science+Business Media Dordrec

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Non-Toxic HTSC Materials. Substitution in the Charge Reservoir Layer:« Cupro/Carbonate » Cuprates an almost 120 K, so that the same trend observed in the remaining families is also seen in here..Increasing the synthesis pressure, we have obtained another, as yet unidentified phase with Tc = 126 K. We have also seen a very different behaviour of the critical temperature of the different members und
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The Discovery Of High-TC Superconductivity And Its Decisive Circumstancesddition, the guiding ideas that finally led to the cuprates will be presented, while background information together with personal experiences will shed light onto the circumstances and the environment that made this breakthrough possible.
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Theory Aspects of High - Temperature Superconductivityors. We discuss, in some detail, approaches based on the concepts of local electron pairing and superconducting properties they imply. The nature of intermediate coupling regime is addressed and a recent progress in BCS-Bose superconductivity crossover problem is outlined.
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Novel Two-Dimensional Perovskites can be created from well-known ABO. compounds by the process of oxygen intercalation, i.e. by an ordered incorporation of excess oxygen to form AB0. compositions. The intercalation process slices the threedimensional ABO. structure into subunits of different thickness, each representing a defined o
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Mercurocuprates: The Highest Transition-Temperature Superconductors first superconductor — elemental mercury — which entered this new state of matter below a superconducting transition temperature (T.) of 4.2K. Eight decades later, mercury once again took centre stage, but this time in a chemically combined state, as the [O-Hg-O]. unitwithin a mixed-metal oxide pos
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