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首页> 外文期刊>Solid state sciences >Synthesis and electrical properties of (LiCo_(3/5)Fe_(1/5)Mn_(1/5))VO_4 ceramics
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Synthesis and electrical properties of (LiCo_(3/5)Fe_(1/5)Mn_(1/5))VO_4 ceramics

机译:(LiCo_(3/5)Fe_(1/5)Mn_(1/5))VO_4陶瓷的合成及电性能

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摘要

(LiCo_(3/5)Fe_(1/5)Mn_(1/5))VO_4 ceramic was synthesized via solution-based chemical method. X-ray diffraction analysis was carried out on the synthesized powder sample at room temperature, which confirms the orthorhombic structure with the lattice parameters of a = 10.3646 (20) A, 6 = 3.7926 (20) A, c = 9.2131 (20) A. Field emission scanning electron microscopic analysis was carried out on the sintered pellet sample that indicates grains of unequal sizes (approx 0.1 to 2 mu m) presents average grains size with poly-disperse distribution on the surface of the ceramic. Complex impedance spectroscopy (CIS) technique is used for the study of electrical properties. CIS analysis identifies: (i) grain interior, grain boundary and electrode-material interface contributions to electrical response (ii) the presence of temperature dependent electrical relaxation phenomena in the ceramics. Detailed conductivity study indicates that electrical conduction in the material is a thermally activated process. The variation of A.C. conductivity with frequency at different temperatures obeys Jonscher's universal law.
机译:通过溶液化学法合成了(LiCo_(3/5)Fe_(1/5)Mn_(1/5))VO_4陶瓷。在室温下对合成粉末样品进行X射线衍射分析,证实了正交晶结构,晶格参数为a = 10.3646(20)A,6 = 3.7926(20)A,c = 9.2131(20)A对烧结的粒料样品进行了场发射扫描电子显微镜分析,结果表明不等尺寸(约0.1至2μm)的晶粒在陶瓷表面上呈现出具有多分散分布的平均晶粒尺寸。复阻抗谱(CIS)技术用于电性能的研究。 CIS分析确定:(i)晶粒内部,晶粒边界和电极-材料界面对电响应的贡献(ii)陶瓷中存在温度相关的电弛豫现象。详细的电导率研究表明,材料中的导电是一个热激活过程。交流电导率在不同温度下随频率的变化遵循Jonscher的普遍定律。

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