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1)  oxide-ion conductor
氧离子导体
1.
Study on the structure and conductivity of La_2Mo_(2-y)Ga_yO_(9-δ) oxide-ion conductors
氧离子导体La_2Mo_(2-y)Ga_yO_(9-δ)的结构和导电性能研究
2.
La_2Mo_2O_9-based oxide-ion conductors have attracted more and more attention since they were reported having high ionic conductivity in 2000 by Lacorre et.
自2000年Lacorre等人报道La2Mo2O9具有较高的氧离子电导率以来,La2Mo2O9 基氧离子导体由于具有优异的性能而受到人们的关注。
3.
The oxide-ion conductor La1.
结果表明,制得的样品为立方结构;在600~1000℃下氧浓差电池电动势的实测值与理论值吻合得很好,氧离子迁移数为1,表明该陶瓷样品在该温度下氧气气氛中为一纯氧离子导体;离子电导率随温度升高而增大,1000℃时达到最大值0。
2)  oxygen ion conductor
氧离子导体
1.
Synthesis and XPS research of the La_2Mo_2O_9 oxygen ion conductor;
La_2Mo_2O_9氧离子导体的合成及XPS研究
2.
The positron lifetime spectra of CaO Doped CeO 2 oxygen ion conductor [(CeO 2) 1-x (CaO) x] have been measured.
测量了不同CaO掺杂量的CeO2 氧离子导体 (CaO) 1-x(CeO2 ) x 的正电子寿命谱 。
3)  oxide ionic conductor
氧离子导体
1.
In oxidizing atmospheres, the specimen was a pure oxide ionic conductor with a maximal oxide-ionic conductivity of 0.
1Mo_2O_(9-α)氧离子导体,对样品进行了XRD、SEM表征,采用交流阻抗谱、氧浓差电池、氧泵等电化学方法研究了该陶瓷样品在600~1000℃下的离子导电特性。
4)  oxide ion conductor
氧离子导体
1.
Progress in LaGaO_3-based oxide ion conductor;
LaGaO_3基氧离子导体的研究进展
5)  oxygen ionic conductor
氧离子导体
1.
The electrochemical reduction principle of direct extraction of metal from molten oxide slags using oxygen ionic conductor as separate membrane was analysed.
分析了以氧离子导体作隔离膜时从氧化物熔渣中直接提取金属的电化学还原原理。
6)  solid oxygen specific electrolyte
固体氧离子导体
1.
By inserting a solid oxygen specific electrolyte between a sample and an oxygen reservoir,and applying a DC power between the oxygen reservoir and the sample oxygen can be pumped out from or poured into the sample in situ independent of temperature and pressure.
通过在样品与氧库间置入一固体氧离子导体以及在样品与氧库间外加一直流电压,氧在该电压驱动下可独立于温度、压力自样品中就位抽出或灌入样品;通过在样品腔内置入一氧传感器,样品中氧逸度及其变化可得到就位监测。
补充资料:氧离子导体
分子式:
CAS号:

性质:具有氧离子迁移特性的化合物。主要有两种结构类型:萤石型和钙钛矿型。萤石型化合物的通式为MO2,在掺杂二价或三价氧化物后,晶格内出现氧离子空位,产生氧离子导电性。除ZrO2基和ThO2基固溶体外,尚有CeO2基和Bi2O3基固溶体,在高温时有比ZrO2基固溶体更高的电导率,但在还原气氛下易被还原。钙钛矿型氧离子导体为掺杂ABO3型化合物,氧离子电导率和离子迁移数皆较ZrO2基固溶体低,如CaTi1-xAlxO3-x/2

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