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首页> 外文期刊>Universal Journal of Materials Science >Preparation and Electrical Properties of MgO-M xOy (M=Fe, Ni) Solid Solution for Magnesium Secondary Battery Cathode
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Preparation and Electrical Properties of MgO-M xOy (M=Fe, Ni) Solid Solution for Magnesium Secondary Battery Cathode

机译:MgO-M x O y (M = Fe,Ni)镁二次电池阴极固溶体的制备及电性能

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MgO-MxOy (M=Fe, Ni) oxide powders were prepared by a direct drying technique and a co-precipitation method for comparing their physical properties. These dried nitrate precursors or hydroxide precipitates were subsequently calcined at 550℃ to transform themselves into oxides, respectively. Calcined oxide powders were sintered at 1100℃ to determine their crystal structures, microstructures, and electrical properties at room temperature. As to crystal structures, sintered Mg1-xFexO1+y and Mg1-xNixO (x=1/3, 1/2, 2/3) specimens contained spinel and rock salt (NaCl or MgO) crystal structures separately. Electrical resistances of these sintered specimens decrease as the measuring frequency of LCR increases. Sintered specimens obtained from the co-precipitated powders had slightly lower electrical conductivities. At a low measuring frequency of 30-3000Hz, these polycrystalline grains have a grain electrical conductivity of 1.0-9.0*10-4 S/m-1 in the semiconductor range. As to microstructures, grain size of these sintered specimens was 0.1-1.0 μm. Relationships between crystal structure, microstructure, and electrical properties were discussed. From this preliminary investigation, these magnesium-containing oxides were a possible cathode material for the secondary magnesium battery.
机译:采用直接干燥技术和共沉淀法制备了MgO-M x O y (M = Fe,Ni)氧化物粉末,比较了其物理性能。随后将这些干燥的硝酸盐前体或氢氧化物沉淀物在550℃下煅烧,分别转化为氧化物。将煅烧的氧化物粉末在1100℃下烧结,以测定其晶体结构,微结构和室温下的电性能。关于晶体结构,烧结的Mg 1-x Fe x O 1 + y 和Mg 1-x Ni x O(x = 1 / 3、1 / 2、2 / 3)样品分别包含尖晶石和岩盐(NaCl或MgO)晶体结构。随着LCR测量频率的增加,这些烧结样品的电阻降低。由共沉淀粉末获得的烧结样品的电导率略低。在30-3000Hz的低测量频率下,这些多晶晶粒的电导率在半导体范围内为1.0-9.0 * 10 -4 S / m -1 。关于显微组织,这些烧结样品的晶粒尺寸为0.1-1.0μm。讨论了晶体结构,微观结构和电性能之间的关系。根据初步研究,这些含镁氧化物可能是二次镁电池的正极材料。

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