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Phase transitions and electrical properties of Bi2O3 up to 2.5 GPa

机译:Phase transitions and electrical properties of Bi2O3 up to 2.5 GPa

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The effect of pressure between 0.5 and 2.5 GPa on the phase transitions and electrical conductivity of Bi2O3 has been studied by the use of electrical impedance spectroscopy. By analyzing the Arrhenius plots gained from the electrical conductivity measurements in the temperature range of the alpha-delta phase transition, the pressure dependence of the critical temperature (T-c) and activation energy were determined. The measurements demonstrated that the pressure effect between 0.5 and 2.5 GPa has a significant effect on the alpha-delta phase transition temperature in Bi2O3, and the increase of T-c for the alpha-delta phase transformation is more than 60 degrees C compared to previous research with DTA E.M. Levin, R.S. Roth, Polymorphism of Bismuth Sesquioxide. 1. Pure Bi2O3, Journal of Research of the National Bureau of Standards - A. Physics and Chemistry 68A (2) (1964) 189-195. The activation energies of electric conductivity in alpha-delta phases seem not to be affected by raising the pressure. During cooling, the delta-alpha transformation Occurred approximately at the temperature corresponding to T-c monitored during the heating cycle. Neither a delta-beta a delta-gamma phase transformation nor a hysteresis effect has been found under pressure, which is in contrastwith normal pressure Studies that used DTA, electrical conductivity measurements and XRD E.M. Levin, R.S. Roth, Polymorphism of Bismuth Sesquioxide. 1. Pure Bi2O3, Journal of Research of the National Bureau of Standards - A. Physics and Chemistry 68A (2) (1964) 189-195: H.A. Harwig, A.G. Gerards, Electrical Properties of the alpha-, beta-, gamma- and delta-Phases of Bismuth Sesquioxide, Journal of Solid State Chemistry 26 (1978) 265-274.

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