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首页> 外文期刊>Glass Physics and Chemistry: A Journal on the Structural, Physical, and Chemical Properties and Nature of Inorganic Glasses and Glass-Forming Melts >Synthesis and physicochemical properties of a solid oxide nanocomposite based on a ZrO2-Y2O3-Gd2O3-MgO system
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Synthesis and physicochemical properties of a solid oxide nanocomposite based on a ZrO2-Y2O3-Gd2O3-MgO system

机译:基于ZrO2-Y2O3-Gd2O3-MgO体系的固体氧化物纳米复合材料的合成及理化性质

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摘要

A highly dispersive powder with a (ZrO2)(0.92)(Y2O3)(0.03)(Gd2O3)(0.03)(MgO)(0.02) composition and specific surface area of 150 m(2)/g has been synthesized via a method of coprecipitation of hydroxides with the subsequent cryochemical treatment of the gel. Nanoceramics based on the cubic modification of zirconium dioxide with the grain size of similar to 40-45 nm have been obtained. The temperature dependence of the specific electrical conductance of the nanoceramics within a temperature range of 350-870A degrees C in air has been studied, and the ratio of the ionic and electronic parts of the conductance has been determined. Recommendations for the use of the obtained oxide nanocomposite as an electrolyte for a high-temperature fuel cell have been given.
机译:一种高分散性粉末,其合成方法为(ZrO2)(0.92)(Y2O3)(0.03)(Gd2O3)(0.03)(MgO)(0.02),比表面积为150 m(2)/ g。与氢氧化物共沉淀,随后进行凝胶的低温化学处理。已经获得了基于二氧化锆的立方改性的纳米陶瓷,其晶粒尺寸类似于40-45nm。研究了在空气中350-870A的温度范围内纳米陶瓷比电导的温度依赖性,并确定了电导的离子和电子部分的比例。已经给出了将所得的氧化物纳米复合材料用作高温燃料电池的电解质的建议。

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