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首页> 外文期刊>日本セラミックス協会学術論文誌 >Relation between the Crystal Structure, Physical Properties and Ferroelectric Properties of PbZr_xTi_(1-x)O_3 (x = 0.40, 0.45, 0.53) Ferroelectric Material by Heat Treatment
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Relation between the Crystal Structure, Physical Properties and Ferroelectric Properties of PbZr_xTi_(1-x)O_3 (x = 0.40, 0.45, 0.53) Ferroelectric Material by Heat Treatment

机译:通过热处理PbZr_xTi_(1-x)O_3(x = 0.40,0.45,0.53)铁电材料的晶体结构,物理性能与铁电性能之间的关系

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摘要

Ferroelectric random access memory (FeRAM) is expected to be the next generation memory. PbZr_xTi_(1-x)O_3 (PZT) is considered as a candidate because of its high remanent polarization (P_r). We investigated the relation between physical properties, crystal structure and ferroelectric performance of the sample before and after various heat treatments. From the results, remanent polarization (P_r) and coercive field (E_c) increased with increasing P_(O_2) during heat treatment. The remanent polarization (P_r) and coercive field (E_c) decreased with increasing Zr content x. Furthermore, the dielectric constants at room temperature increased with increasing Zr content x. On the other hand, Curie Temperature (T_C) increased with decreasing Zr content x or increasing P_(O_2) during heat treatment. From the structural analysis, the bond length of M(Zr,Ti)-O1 decreased with increasing P_(O_2) during heat treatment or with decreasing Zr content x of pre-heated samples. Consequently, the ferroelectric performance was affected by changing the defect of oxygen and the strain of the structure.
机译:铁电随机存取存储器(FeRAM)有望成为下一代存储器。 PbZr_xTi_(1-x)O_3(PZT)由于其高剩余极化(P_r)而被认为是候选。我们研究了各种热处理前后样品的物理性质,晶体结构和铁电性能之间的关系。结果表明,在热处理过程中,剩余极化强度(P_r)和矫顽场(E_c)随着P_(O_2)的增加而增加。随着Zr含量x的增加,剩余极化(P_r)和矫顽场(E_c)减小。此外,室温下的介电常数随着Zr含量x的增加而增加。另一方面,在热处理期间,居里温度(T_C)随着Zr含量x的减少或P_(O_2)的增加而增加。从结构分析来看,M(Zr,Ti)-O1的键长随着热处理过程中P_(O_2)的增加或预热样品中Zr含量x的减少而减小。因此,通过改变氧的缺陷和结构的应变来影响铁电性能。

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