首页> 外文会议>SPIE Conference on Electroactive polymer actuators and devices >Temperature Dependent Impedance Spectroscopy and Thermally Stimulated Depolarization Current (TSDC) Analysis of Disperse Red 1-co-Poly(methyl methacrylate) Copolymers
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Temperature Dependent Impedance Spectroscopy and Thermally Stimulated Depolarization Current (TSDC) Analysis of Disperse Red 1-co-Poly(methyl methacrylate) Copolymers

机译:温度依赖性阻抗光谱和热刺激的分散红1-共聚(甲基丙烯酸甲酯)共聚物分析的分析

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The dielectric relaxation processes of polymethyl methacrylates that have been functionalized with Disperse Red 1 (DR1) in the side chain (DR1-co-MMA) were studied with temperature dependent impedance spectroscopy and thermally stimulated depolarization current (TSDC) techniques. Copolymers with dipole contents which varied between 10 mol% and 70 mol% were prepared. All samples showed dipole relaxations above the structural-glass transition temperature (T_g). The β-relaxation of the methyl methacrylate (MMA) repeating unit was most visible in DR1(10%)-co-MMA and rapidly vanishes with higher dipole contents. DSC data reveal an increase of the T_g by 20 °C to 125°C with the inclusion of the dipole into the polymethyl methacrylate (PMMA) as side chain. The impedance data of samples with several DR1 concentrations, taken at several temperatures above T_g, have been fitted with the Havriliak-Negami (HN) function. In all cases, the fits reveal a dielectric response that corresponds to power-law dipolar relaxations. TSDC measurements show that the copolymer can be poled, and that the induced polarization can be frozen by lowering the temperature well below the glass transition. Relaxation strengths Δ_ε estimated by integrating the depolarization current are similar to those obtained from the impedance data, confirming the efficient freezing of the dipoles in the structural-glass state.
机译:用温度依赖性阻抗谱和热刺激的去极化电流(TSDC)技术研究已经用侧链(DR1-CO-MMA)中的分散红色1(DR1)官能化的聚甲基丙烯酸甲酯的介电弛豫方法。制备10mol%和70mol%之间变化的偶极含量的共聚物。所有样品均显示在结构玻璃化转变温度(T_G)上方的偶​​极松弛。甲基丙烯酸甲酯(MMA)重复单元的β-弛豫在DR1(10%) - CO-MMA中最可见,并用更高的偶极含量迅速消失。 DSC数据显示将偶极物含有20℃至125℃的增加,将偶极甲基甲酸甲酯(PMMA)作为侧链。在T_G高于T_G的几个温度下拍摄具有几个DR1浓度的样品的阻抗数据已经安装了HAVRILIAK-Negami(HN)功能。在所有情况下,配合揭示了对应于功率法偶极松弛的介电响应。 TSDC测量表明,可以通过降低玻璃化转变的良好温度来冷冻诱导的偏振来抛光共聚物。通过集成去极化电流估计的弛豫强度Δ_ε类似于从阻抗数据获得的那些,确认在结构玻璃状态下的偶极沉淀。

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