Phase equilibria, water dissolution, and peculiarities of charge transfer in Ca-doped La2Zr2O7–α

被引:0
作者
E. P. Antonova
M. V. Ananyev
A. S. Farlenkov
E. S. Tropin
A. V. Khodimchuk
N. M. Porotnikova
机构
[1] Russian Academy of Sciences,Institute of High Temperature Electrochemistry, Ural Branch
[2] Ural Federal University,Institute of Chemical Engineering
来源
Russian Journal of Electrochemistry | 2017年 / 53卷
关键词
lanthanum zirconate; proton-conducting oxide; solubility limit; hydration; conductivity;
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摘要
A series of oxides La2 - xCaxZr2O7–α (x = 0.00, 0.05, 0.10, 0.15, 0.20) is synthesized. It is found that in samples with the calcium content x = 0.15, 0.20, the second phase Ca0.9La0.2Zr0.9O3 is present in the fraction increasing with the increase in x. The solubility limit of calcium to form solid solutions based on La2Zr2O7 corresponds to x = 0.1. By high-temperature gravimetry, the proton concentration in La1.95Са0.05Zr2O7–α is obtained as a function of temperature in the interval of 300–950°С in Н2О–О2 atmosphere. According to temperature programmed desorption studies, in the temperature range of 400–900°С at least two types of OH defects with different binding energies are present in the oxide lattice. The temperature dependences of conductivity are obtained for La1.95Са0.05Zr2O7–α in dry and humid air atmosphere in the temperature range of 350–800°С by the method of impedance spectroscopy. The electrolyte conductivity in humid air is shown to substantially exceed the corresponding values in dry air, which can be associated with manifestation of protonic conductivity in humid atmosphere. The dependences of oxide conductivity on the oxygen content in the gas phase are determined. The conductivity is divided into its ionic and hole components.
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页码:651 / 657
页数:6
相关论文
共 34 条
[1]  
Kreuer K.D.(2003)undefined Annu. Rev. Mater. Res. 33 333-undefined
[2]  
Björketun M.E.(2008)undefined Solid State Ionics 178 1642-undefined
[3]  
Knee C.S.(2015)undefined J. Phys. Chem.C 119 8480-undefined
[4]  
Nyman B.J.(2013)undefined Mater. Res. Bull. 48 3103-undefined
[5]  
Wahnstrom G.(2001)undefined J. Electrochem. Soc. 148 E252-undefined
[6]  
Toyoura K.(2004)undefined Solid State Ionics 167 389-undefined
[7]  
Nakamura A.(2015)undefined Estestv. Tekh. Nauki 10 127-undefined
[8]  
Matsunaga K.(2001)undefined Solid State Ionics 145 295-undefined
[9]  
Islam Q.A.(2010)undefined Russ. J. Electrochem. 46 741-undefined
[10]  
Nag S.(undefined)undefined undefined undefined undefined-undefined