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Electrical conduction in a semicrystalline polyethylene terephthalate in high electric field

机译:半结晶聚对苯二甲酸乙二醇酯在高电场下的导电

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Measurements of conduction currents were carried out on polyethylene terephthalate semi crystalline PET in an electrical field region varying from 40 to 260 V/mu m. Various mechanisms of conduction (Richardson-Schottky, Fowler-Nordheim, Poole-Frenkel, space charge limited current SCLC, Hopping), can cause non-linear characteristics. To highlight the mechanism responsible for conduction in the PET, we used the slope of the experimental curve Log(J) =f(E) in the region 150 < E < 260 V/mu m, to calculate the value of the dielectric permittivity. The characteristic curve Log(J) =J(1/T) shows that the Poole-Frenkel mechanism of conduction is prevalent in the semi crystalline PET. The characteristic J=f(E) for various thicknesses shows that the field threshold increases with the thickness. (c) 2006 Elsevier Ltd. All rights reserved.
机译:在聚对苯二甲酸乙二醇酯半结晶PET上在40至260V /μm变化的电场区域中进行传导电流的测量。各种传导机制(理查森-肖特基,福勒-诺德海姆,普尔-弗伦克,空间电荷限制电流SCLC,跳频)会导致非线性特性。为了突出PET中导电的机理,我们使用实验曲线Log(J)= f(E)在150

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