钨酸盐
离子键合
极化率
离子
离子电导率
铝
电动势
热传导
原电池
电解
电化学
化学
无机化学
材料科学
分析化学(期刊)
物理化学
电极
分子
冶金
物理
量子力学
电解质
有机化学
色谱法
复合材料
作者
Yasuyuki Kobayashi,Takashi Egawa,Shinji Tamura,Nobuhito Imanaka,Gin‐ya Adachi
摘要
Ionic conduction of trivalent aluminum in solid aluminum tungstate, Al 2 (WO 4 ) 3, has been directly and quantitatively demonstrated. Trivalent ions, especially for aluminum where the polarizability is considerably low, are strongly bonded in a crystal lattice and have been believed to be unlikely to exhibit migration in solids because of high electrostatic interaction with the surrounding skeleton structure. The material, Al 2 (WO 4 ) 3, which has the Sc 2 (WO 4 ) 3 structure, was selected in order to reduce the interaction between the framework and the mobile species, Al 3+, as much as possible. The ionic conduction characteristics of Al 2 (WO 4 ) 3 were investigated by means of electrolysis and electromotive force measurement by constructing an aluminum concentration cell. The typical electrical conductivity of Al 2 (WO 4 ) 3 was, approximately 2 × 10 - 5 S cm - 1 at 800 °C. The dc electrolysis data strongly support the conclusion that ionic Al 3+ is the mobile species in Al 2 (WO 4 ) 3 . By further electrochemical measurements, it was confirmed that the mobile species was aluminum ion in a trivalent state with no contribution due to electronic conduction. The ionic transference number was determined to be unity from the oxygen−air gas concentration cell and the aluminum concentration cell method.
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