Structural and dielectric studies of lanthanum-doped barium neodymium titanate

P. B. Abhange, V. C. Malvade, S. R. Kulal, S. Chandralingam, S. Kokare
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Abstract

ABSTRACTThe high quality factor, high dielectric constant, low dielectric loss and small temperature coefficient of resonant frequency are the most desirable characteristics of the microwave dielectric materials. Considering the hazardous nature of lead-based ceramics, many research groups have paid great attention to the research on non-lead-based perovskite ceramic. Here, we synthesize the material BaNd2-xLaxTi4O12 (for x = 0.02, 0.04, 0.06 and 0.08) by choosing the method which is of low cost and easy. The X-ray diffraction (XRD) data confirm its orthorhombic crystal structure and the scanning electron microscopy (SEM) picture shows a grain size of less than 2 µm. The dielectric measurement gives temperature independency in the range from room temperature to 523 K, which is observed to be independent of level of concentration. The complex impedance measurement shows a double hemisphere indicating separate grain and grain-boundary contributions and is well resolved at higher temperature.
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掺镧钛酸钕钡的结构和介电性能研究
摘要高质量因数、高介电常数、低介电损耗和小谐振频率温度系数是微波介质材料最理想的特性。考虑到铅基陶瓷的危害性,许多研究小组都非常重视对非铅基钙钛矿陶瓷的研究。本文选择了成本低、容易的方法合成了BaNd2-xLaxTi4O12材料(x = 0.02, 0.04, 0.06和0.08)。x射线衍射(XRD)数据证实了其正交晶型结构,扫描电镜(SEM)图显示其晶粒尺寸小于2µm。介电测量给出了从室温到523 K范围内的温度独立性,这被观察到与浓度水平无关。复阻抗测量呈现双半球,表明晶粒和晶界分别有贡献,且在较高温度下分辨良好。
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