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Normal ferroelectric to ferroelectric relaxor conversion in fluorinated polymers and the relaxor dynamics

机译:含氟聚合物中正常铁电到铁电弛豫体的转化及其弛豫动力学

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To elucidate the molecular origin of the polarization dynamics in the ferroelectric relaxor poly(vinylidene fluoride-trifluoroethylene-chlorofluoroethylene) (P(VDF-TrFE-CFE)) terpolymer, a broadband dielectric study was carried out in the frequency range from 0.01 Hz to 10 MHz and temperatures from -150 degrees C to 120 degrees C for the terpolymer and a normal ferroelectric P(VDF-TrFE) copolymer. The relaxation processes were also studied using dynamic mechanical analysis. It was shown that in the terpolymer, which was completely converted to a ferroelectric relaxor, there is no sign of the relaxation process associated with the ferroelectric-paraelectric transition which occurs in the P(VDF-TrFE) copolymer. In the copolymer, three additional relaxation processes have been observed. It was found that the relaxation process beta(a), which was commonly believed to be associated with the glass transition in the amorphous phase, in fact, contains significant contribution from chain segment motions such as domain boundary motions in the crystalline region. In the temperature range studied, the terpolymer exhibits the latter three relaxation processes with the one (termed beta(r)) near the temperature range of beta(a) significantly enhanced. This is consistent with the observation that in conversion from the normal ferroelectric to a ferroelectric relaxor, the macro-polar domains are replaced by nano-polar-clusters and the boundary motions as well as the reorientation of these nano-clusters generate the high dielectric response. The experimental data also reveal a broad relaxation time distribution related for the beta(r) process whose distribution width increases with reduced temperature, reflecting the molecular level heterogeneity in the crystalline phase due to the random introduction of the CFE monomer in the otherwise ordered macro-polar domains. The random interaction among the nano-clusters as well as the presence of the random fields produces ferroelectric relaxor behavior in the terpolymer. (c) 2006 Springer Science + Business Media, Inc.
机译:为了阐明铁电弛豫器聚偏二氟乙烯-三氟乙烯-氯氟乙烯(P(VDF-TrFE-CFE))三元共聚物中极化动力学的分子起源,在0.01 Hz至10的频率范围内进行了宽带介电研究。三元共聚物和普通铁电P(VDF-TrFE)共聚物的MHz和-150摄氏度至120摄氏度的温度。还使用动态力学分析研究了松弛过程。结果表明,在完全转变为铁电弛豫剂的三元共聚物中,没有迹象表明与P(VDF-TrFE)共聚物中发生的铁电-顺电转变有关的弛豫过程。在共聚物中,观察到了三个附加的松弛过程。已发现通常被认为与非晶相中的玻璃化转变有关的弛豫过程β(a)实际上包含链段运动(例如晶体区域中的畴边界运动)的显着贡献。在所研究的温度范围内,三元共聚物表现出后三个松弛过程,其中一个(称为β(r))在β(a)的温度范围附近显着增强。这与以下观察结果一致,即从正常铁电弛豫器转换为铁电弛豫器时,大极性畴被纳米极性簇代替,并且这些纳米簇的边界运动和重新取向产生了高介电响应。实验数据还揭示了与β(r)过程有关的宽弛豫时间分布,其分布宽度随温度降低而增加,反映出结晶相中的分子水平异质性是由于将CFE单体随机引入到否则有序的宏观结构中。极域。纳米团簇之间的无规相互作用以及无规场的存在在三元共聚物中产生铁电弛豫行为。 (c)2006年Springer Science + Business Media,Inc.

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