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Role of doping and CuO segregation in improving the giant permittivity of CaCU3Ti4O12

机译:掺杂和CuO隔离在提高CaCU3Ti4O12的大介电常数中的作用

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摘要

The dopant role on the electric and dielectric properties of the perovskite-type CaCu3Ti4O12 (CCTO) compound is evidenced. Impedance spectroscopy measurements show that the relevant permittivity value attributed to sintered CCTO is due to grain boundary (g.b.) effects. The g.b. permittivity value of the pure CCTO can be increased of 1-2 orders of magnitude by cation substitution on Ti site and/or segregation of CuO phase, while the bulk permittivity keeps values 90 < epsilon(r) < 180. Bulk and g.b. conductivity contributions are discussed: electrons are responsible for the charge transport and a mean bulk activation energy of 0.07 eV is obtained at room temperature for all the examined samples. The g.b. activation energy ranges between 0.54 and 0.76 eV. Defect models related to the transport properties are proposed, supported by electron paramagnetic resonance measurements. (C) 2004 Elsevier Inc. All rights reserved.
机译:证明了掺杂剂对钙钛矿型CaCu3Ti4O12(CCTO)化合物的电和介电性能的影响。阻抗谱测量表明,归因于CCTO烧结的相关介电常数值是由于晶界(g.b.)效应引起的。 g.b.通过在Ti位点上进行阳离子置换和/或CuO相分离,可以将纯CCTO的介电常数值提高1-2个数量级,而总介电常数则保持90

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