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http://dx.doi.org/10.4313/TEEM.2017.18.6.311

Change in Properties of (Ba1-xLax)Fe3+1-tFe4+tO3-y System Depending on Heat Treatment Conditions  

Lee, Eun-Seok (Department of Chemistry, Cheongju University)
Lee, Seo-Jin (Department of Materials Science and Engineering, Chungnam National University)
Publication Information
Transactions on Electrical and Electronic Materials / v.18, no.6, 2017 , pp. 311-315 More about this Journal
Abstract
The perovskite system $(Ba^{2+}{_{1-x}}La^{3+}{_x})Fe^{3+}{_{1-t}}Fe^{4+}{_t}O_{3-y}$ (y = (1 - x --t)/2) having a composition of x = 0.0, 0.1, 0.2, and 0.3 showedean increase in $Fe^{4+}$ mole ratios with an increase in oxygen partial pressure ($N_2{\rightarrow}air{\rightarrow}O_2$), and with an increasefin s, the $Fe^{3+}$ quantity decreased and oxygen content (3-y value) increased. For each N sampls heat-treated in $N_2$ gas, a considerable weight gain, i.e.g a steadynincrease if oxygen content, was observed in the TGA data on the cooling process. The conductivity values at a constant temperature were in the order of $N_2$; the respective log ${\sigma}$ values (${\Omega}^{-1}{\cdot}cm^{-1}$) at 323 K of the BL0 sample were -5.75 (BL0-N), -3.39 (BL0-A), and -0.53 (BL0-O). The mixed valencies of $Fe^{3+}$ and $Fe^{4+}$ ions in each sample were also confirmed by both the oxidation curve above 350 mV and the cathodic reduction curve below 200 mV from cyclic voltammetry.
Keywords
Perovskite; TGA; Oxygen content; Electrical conductivity; Mixed valency;
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