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Transient and thermally stimulated depolarization currents in pure and iodine doped polyvinyl formal (PVF) films

机译:纯和碘掺杂的聚乙烯醇缩甲醛(PVF)薄膜中的瞬态和热激发去极化电流

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摘要

Transient currents, measured with pure and iodine doped polyvinyl formal (PVF) films as a function of poling field (15-100 kV/cm) and temperature (30-95℃), have been found to follow Curie-von Schweidler law characterized with two slopes in short and long time regions. The isochronals (i.e. current/temperature plots at constant times) have been found to give rise to a peak located at 75℃. The order of current has been found to increase with increase in poling field, temperature and iodine mixing. The comparative studies of the isochronals with the thermally stimulated discharge current. (TSDC) indicated the strong resemblance between the two studies. It is suggested that both the dipolar orientation due to molecular mechanism of motions with the side chains and space charge due to trapping of injected charge carriers in energetically distributed traps may be responsible for the observed currents. The dependence of current and activation energy on iodine mixing is explained on the basis of a charge transfer type of interaction.
机译:用纯碘掺杂的聚乙烯醇缩甲醛(PVF)薄膜测量的瞬态电流随极化场(15-100 kV / cm)和温度(30-95℃)的变化而变化,其遵循居里·冯·史威德定律,其特征为短期和长期区域的两个斜坡。已发现等时线(即恒定时间的电流/温度图)产生了一个位于75℃的峰。已经发现电流的阶数随着极化场,温度和碘混合的增加而增加。等时曲线与热激励放电电流的比较研究。 (TSDC)表示这两项研究非常相似。有人认为,由于侧链运动的分子机理引起的偶极取向和由于注入的电荷载流子被捕获在能量分布的阱中而引起的空间电荷可能与观察到的电流有关。基于相互作用的电荷转移类型,解释了电流和活化能对碘混合的依赖性。

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