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Dielectric relaxation and Schottky conduction of IR laser irradiated Makrofol-DE polycarbonate

机译:IR激光辐照的Makrofol-DE聚碳酸酯的介电弛豫和肖特基传导

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摘要

The effect of IR laser pulses on the dielectric properties, X-ray diffraction, Fourier transform infrared spectroscopy (FTIR), and I-V characteristics of Makrofol-DE 1-1 CC polycarbonate has been investigated in the temperature and frequency ranges of 300-375K and 10 kHz-4 MHz, respectively. IR laser fluencies are set from 0.47 to 7.07 J/cm ~2. Three relaxation processes namely, α, β, and ? have been obtained. The first process is due to the micro Brownian motion of the segmental parts of the main chain. The second process was assigned to the local motion of the dipoles within the crystalline phases of the sample. The third one was attributed to the crank shaft motion along the main chains of the Makrofol. X-ray diffraction and FTIR spectroscopy have revealed that the irradiation of Makrofol at the fluence range 0.94-7.07 J/cm ~2 causes crosslinking formation inside the sample. Reduction in crystallinity of Makrofol at higher IR laser doses is due to the crosslinking formation taking place within polymer matrix. At higher voltage, the conduction mechanism of Makrofol-DE was identified as Shottky type. The attained results suggested strongly the applicability of Makrofol-DE in IR laser pulses dosimetry.
机译:在300-375K的温度和频率范围内,研究了IR激光脉冲对Makrofol-DE 1-1 CC聚碳酸酯介电性能,X射线衍射,傅里叶变换红外光谱(FTIR)和IV特性的影响。分别为10 kHz-4 MHz。 IR激光通量设置为0.47至7.07 J / cm〜2。三个松弛过程,即α,β和?已获得。第一个过程是由于主链分段部分的微布朗运动。第二个过程分配给样品结晶相中偶极子的局部运动。第三个原因是曲轴沿Makrofol主链的运动。 X射线衍射和FTIR光谱表明,在0.94-7.07 J / cm〜2的注量范围内照射Makrofol会导致样品内部形成交联。在较高的红外激光剂量下,Makrofol的结晶度降低是由于在聚合物基质中发生了交联形成。在较高的电压下,Makrofol-DE的传导机理被确定为Shottky型。所获得的结果强烈表明了Makrofol-DE在红外激光脉冲剂量测定中的适用性。

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