LDPE中的活化能和电子输运

K. Bambery, R. Fleming
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引用次数: 10

摘要

空间电荷测量的低密度聚乙烯样品,直流电场已应用。一些测量是在等温条件下进行的,而另一些则是在样品厚度上建立温度梯度。等时电流密度。也被测量为温度和场的函数。电子在样品中跳跃输运的活化能约为0.09 eV,而根据等时电流密度的温度依赖性推导出的活化能在0.60-1.40 eV之间,这取决于外加电场强度和样品杂质含量。结果表明,等时电流密度由阴极的电子注入控制,最可能的注入机制是金属电极的费米能级与介电介质内靠近界面的受体位点之间的隧穿作用。
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Activation energies and electron transport in LDPE
Space charge measurements were made on low density polyethylene samples to which dc fields had been applied. Some measurements were performed under isothermal conditions, and others with a temperature gradient established across the sample thickness. Isochronal current density. was also measured as a function of temperature and field. The activation energy associated with the hopping transport of electrons through the sample volume was around 0.09 eV, whereas the activation energies deduced from the temperature dependence of the isochronal current density were in the range 0.60-1.40 eV, depending on the applied field strength and the impurity content of the samples. It was concluded that the isochronal current densities were controlled by electron injection from the cathode, the most likely injection mechanism being tunnelling between the Fermi level of the metallic electrode and acceptor sites within the dielectric close to the interface.
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