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首页> 外文期刊>Journal of electroceramics >The composition induced crossover in nonlinear dielectric response in (1-x) Pb(Zr0.70Ti0.30)O-3-x BiMn2O5 (x=0, 0.02, 0.055, 0.11, 0.15, 0.22, and 1) ceramics
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The composition induced crossover in nonlinear dielectric response in (1-x) Pb(Zr0.70Ti0.30)O-3-x BiMn2O5 (x=0, 0.02, 0.055, 0.11, 0.15, 0.22, and 1) ceramics

机译:(1-x)Pb(Zr0.70ti0.30)O-3-x Bimn2O5(x = 0,0.02,0.055,0.11,0.15,0.22和1)陶瓷的非线性介电响应中的组成诱导的非线性介电响应交叉

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摘要

Ceramics based on lead zirconate-titanate Pb(Zr0.70Ti0.30)O-3 (PZT), bismuth manganite (BM) and the composite (1 - x) PZT-x BM were obtained. A systematic study of linear and nonlinear dielectric susceptibilities temperature and frequency dependences was conducted. A composition-induced crossover in nonlinear dielectric susceptibility was detected. The so-called scaled nonlinear susceptibility, a(3), was obtained from experimental values of the real part of the linear and third-order nonlinear dielectric susceptibilities. The value for a(3) was negative for low BM content in the whole temperature range specific to discontinuous ferroelectric phase transitions and relaxor behavior. In contradiction, a(3) was positive for BM and for the composite with sufficiently high BM content. The positive a(3) was attributed to a subsystem of dipoles created by trapped charges. Hopping charge transfer, which is a dominant mechanism for conduction in manganites, is responsible for the positive a(3) and for the colossal magnitude of the imaginary part of the linear dielectric susceptibility. The concentration of the ions was determined using scanning electron microscopy. The chemical disorder and the precipitation of ions determined using time of flight-secondary ion mass spectrometry correspond to a crossover in the electrical features.
机译:得到陶瓷基于锆钛酸钛酸盐Pb(Zr0.70ti0.30)O-3(PZT),铋锰石(BM)和复合物(1 - X)PZT-X BM。进行了对线性和非线性介电敏感性温度和频率依赖性的系统研究。检测到非线性介电易感性的组成诱导的交叉。所谓的缩放非线性易感性A(3)是从线性和三阶非线性介电敏感性的真实部分的实验值获得的。对于特定于不连续铁电相转变和松弛运动行为的全温度范围,A(3)的值为低BM含量为阴性。在矛盾中,A(3)对于BM和具有足够高的BM含量的复合材料是阳性的。正A(3)归因于被困费用创建的偶极子系统。跳跃电荷转移,即锰铁传导的主要机制,对正A(3)和线性介电易感性的虚部的巨大幅度负责。使用扫描电子显微镜测定离子的浓度。使用飞行二次离子质谱法测定的化学紊乱和离子的沉淀对应于电特征的交叉。

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