首页> 外文会议>Proceedings of 2012 21st IEEE ISAF held jointly with 11th IEEE ECAPD and IEEE PFM (ISAF/ECAPD/PFM 2012) >Dielectric properties and microstructure of CaCu3Ti4−xMnxO12 fibres grown by laser floating zone technique
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Dielectric properties and microstructure of CaCu3Ti4−xMnxO12 fibres grown by laser floating zone technique

机译:激光浮区法生长CaCu3Ti4-xMnxO12纤维的介电性能和微观结构

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In this work, we report the dielectric properties and microstructure of the Mn doped CaCu3Ti4O12 fibres, grown by the laser floating zone technique, using different pulling rates (Rp). The samples were studied by X-ray diffraction, scanning electronic microscopy, energy dispersive X-ray spectroscopy and AC impedance spectroscopy. The microstructure of CaCu3Ti4−xMnxO12 fibres has been analyzed and correlated with the respective dielectric and electrical properties. Dielectric and electrical measurements shown that the introduction of small amounts of Mn (x=0.24) produced significant changes on the dielectric behavior of the samples, with a stronger effect in the fibres grown at lower Rp (5 mm/h). In this case it is observed a significant increase of the electrical resistance, comparing with the undoped fibres, followed by the absence of the typical Maxwell-Wagner dielectric relaxation at the MHz region. It is also observed in these doped samples an Ohmic behavior, contrarily to the non linear behavior of the undoped fibres, which may be related to the decrease of the potential barrier, as a consequence of the introduction of Mn in the lattice.
机译:在这项工作中,我们报告了使用不同的拉速(Rp)通过激光浮区技术生长的Mn掺杂的CaCu3Ti4O12纤维的介电性能和微观结构。通过X射线衍射,扫描电子显微镜,能量色散X射线光谱和AC阻抗光谱对样品进行了研究。分析了CaCu3Ti4-xMnxO12纤维的微观结构,并将其与各自的介电和电学性质相关联。介电和电学测量表明,少量Mn(x = 0.24)的引入对样品的介电性能产生了显着变化,对以较低Rp(5 mm / h)生长的纤维具有更强的影响。在这种情况下,与未掺杂的纤维相比,观察到电阻显着增加,随后在MHz区域不存在典型的Maxwell-Wagner介电弛豫。在这些掺杂样品中还观察到欧姆行为,这与未掺杂纤维的非线性行为相反,其可能与势垒的减小有关,这是由于在晶格中引入了Mn。

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