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Space Charge Trapping in Electrical Potential Well Caused by Permanent and Induced Dipoles

机译:空间电荷捕获永久性和诱导的偶极子引起的电势井

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Space charge formation in low-density polyethylene film containing a small amount of MgO nanoparticles (LDPE/MgO nanocomposite film) subjected to a high electric field greater than 100 kV/mm has been studied using an improved pulsed electroacoustic (PEA) system. No marked space charge formation was observed in LDPE/MgO nanocomposite films. To discuss the mechanism of no space charge accumulation in LDPE/MgO nanocomposite film, we assumed that both electric potential wells produced by a permanent dipole moment such as that of a carbonyl radical (C=O) and an induced dipole consisting of MgO nanoparticles (spherical dielectrics) under a high electric field create a trapping site for electric charge carriers. The trapping depth created by the permanent dipole moment such as that of the carbonyl radical (C=O) of chemical impurity defects is about 0.45 eV. However, that induced by high-permittivity dielectric nanoparticles is about 1.5 to 5.0 eV, which is much deeper than that of chemical impurity defects. The suppression of space charge formation is explained using the potential well model consisting of an induced dipole by a high-permittivity dielectric nanoparticle.
机译:使用改进的脉冲电声(PEA)系统,研究了含有少量MgO纳米颗粒(LDPE / MgO纳米复合膜)的低密度聚乙烯膜中的空间电荷形成,该低密度纳米颗粒(LDPE / MgO / Mmm为大于100kV / mm。在LDPE / MgO纳米复合膜中未观察到明显的空间电荷形成。为了讨论LDPE / MgO纳米复合膜中没有空间电荷累积的机制,我们假设通过永久偶极矩等,例如羰基 - 基团(C = O)和由MgO纳米颗粒组成的诱导偶极子产生的两种电势孔(球形电介质)在高电场下产生用于电荷载流子的捕获部位。由诸如化学杂质缺陷的羰基自由基(C = O)的永久偶极矩产生的捕获深度为约0.45eV。然而,由高介电常数介电纳米颗粒诱导的约1.5至5.0eV,这比化学杂质缺陷的更深。利用高介电常数介电纳米粒子由诱导偶极组成的潜在井模型来解释对空间电荷形成的抑制。

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