Measurements of the dielectric constant κ in high-purity BaTiO3 ceramics as a function of temperature show that κ is quite dependent on grain size in the ferroelectric state while it is almost independent of grain size in the paraelectric state. In the ferroelectric orthorhombic and rhombohedral phases, κ decreases rapidly with lowering temperature when grain size is reduced smaller than 3 μm. It is also observed that the Curie temperature Tc is decreased very slightly, but the lower two transition points are shifted to higher temperatures as grain size decreases.
Measurement of the Hall coe%cient in the Ba2Yl -Pr"Cu307-& system has revealed that an increase in Pr concentration reduces the Hall carrier number (1/eRH) and its strong temperature dependence. The Cu formal valence calculated from the Pr valence, which has been determined to be -+3. 5, shows a weakly decreasing dependence on Pr concentration. T, shows a stronger dependence on the Hall carrier number and the Cu-0 formal valence than in the oxygen-depleted Ba2YCu307-g system. The persistence of the chain band explains this observed difference, suggesting that the actual Cu-0 valence dependence of the 90-K superconductor is stronger than that of the 40-K superconductor.Of known Ba2[lanthanide]Cu307s compounds, only the Pr compound shows neither superconductivity nor metallic conduction, although it has an orthorhombic structure isomorphic to that of Ba2YCu307 (Refs. 1 and 2). Thus, the difference in the electronic and/or the crystal structure between these compounds might be a key parameter controlling superconductivity as well as normalstate properties of the high-T, copper oxides. It is known that a series of single-phase Ba2Y1-"Pr"Cu307-s can be synthesized. 34 They continuously range from superconductors to insulators. It is generally accepted that in high-T, copper oxides, the total carrier density is a crucial parameter by which the conduction properties are determined.There are several systems, for example,
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