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The Effect of Electrical field on the Slow Polarization of Nano-SiOx and Low-density Polyethylene Composite

机译:电场对纳米SiOx和低密度聚乙烯复合材料慢极化的影响

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The composite of nano-SiOx and low-density polyethylene is prepared with the double-solution method. Charging currents of the composite at different dc stress, as well as discharging currents, are recorded with Keithley 6517A. It is found that the curves of charging and discharging currents increase with electrical field. Transferring those charging and discharging currents from time domain into frequency domain with Fourier Transform method, it is found that the shapes of the dielectric loss spectrum vary with electrical field. At the same time, it is also found that the dielectric loss peaks increase with electrical field in frequency domain. It is believed that these phenomena have close relation with traps of the interfaces between nano-SiOx and polyethylene, as well as carriers' trapping and de-trapping in those interfaces.
机译:采用双溶液法制备了纳米SiOx与低密度聚乙烯的复合材料。用吉时利6517A记录复合材料在不同直流应力下的充电电流以及放电电流。发现充电和放电电流的曲线随电场而增加。用傅立叶变换法将那些充电和放电电流从时域转移到频域,发现介电损耗谱的形状随电场而变化。同时,还发现介电损耗峰值在频域中随电场的增加而增大。据信,这些现象与纳米SiO x和聚乙烯之间的界面的陷阱以及在这些界面中的载流子的俘获和去陷阱密切相关。

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