Electrical conductivity of polycrystalline 3Y2O3·WO3 at high temperatures

K. Kuribayashi, T. Sata
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Abstract

The electrical conductivity of polycrystalline Y6WO12 (3Y2O3·WO3) and of polycrystalline Y6WO12 doped with alkaline earth oxides or ZrO2 were measured over the temperature range from 800 to 1400°C under oxygen partial pressures of 10−5 to 100 atmospheres. Y6WO12 showed a p-type conductivity at higher oxygen pressures and an n-type conductivity at lower oxygen pressures. Additions of alkaline earth oxides increased the conductivity of Y6WO12 in the higher oxygen pressure region. The conductivity of alkaline earth oxides-doped Y6WO12 decreased monotonically with decreasing oxygen partial pressures and approached constant values at lower oxygen partial pressures. The ZrO2 addition caused a decrease in the conductivity of Y6WO12 in the higher oxygen pressure region. The variations of the conductivity with oxygen pressure are discussed assuming various defects models.

多晶3Y2O3·WO3在高温下的导电性
测定了多晶Y6WO12 (3Y2O3·WO3)和掺入碱土氧化物或ZrO2的多晶Y6WO12在800 ~ 1400℃的温度范围内,在10−5 ~ 100个大气压下的电导率。Y6WO12在高氧压下表现为p型电导率,低氧压下表现为n型电导率。添加碱土氧化物提高了Y6WO12在高氧压区的电导率。碱土氧化物掺杂Y6WO12的电导率随氧分压的降低而单调降低,在氧分压较低时接近恒定值。ZrO2的加入导致Y6WO12在高氧压区电导率下降。讨论了不同缺陷模型下电导率随氧压的变化规律。
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