Effects of γ-Irradiation and Sample Aging on the AC-Electrical Properties of Epoxy/ZnO/CB Hybrid Nanocomposites

Mohammad younes Almarahfeh, Hassan K. Juwhari, Z. Elimat, Ziad M. Alqudah
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Abstract

The goal of this paper is to study the effects of gamma irradiation and samples’ aging on the AC-electrical properties of hybrid epoxy resin as a function of frequency, temperature, and (zinc oxide) ZnO content (0, 0.049, 0.099, 0.149, and 0.199 wt) at 0.001 wt of conductive (carbon black) CB nanoparticles. The irradiation processes were administered at room temperature in a gamma chamber utilizing a Cobalt 60 source of average energy = 1.25 MeV with doses = 100, 750, and 1000 Gy. The AC-electrical properties, including the impedance, dielectric constant, dielectric loss, conductivity, and activation energy of the nanocomposites, were initially studied after years of sample preparations. The collected empirical data were later analyzed before and after the gamma irradiation. The results showed that exposing samples to different doses of gamma radiation affects these AC-electrical properties significantly. It was found that the energy gap decreased as the dosage of gamma radiation increased. This could be explained as the gamma-irradiation processes induce changes in the structure of the epoxy hybrid nanocomposites by reinforcing the metal–polymer bonding and hence, causing the release of more free electrons inside the hybrid nanocomposites. Moreover, the sample aging results showed that the AC-electrical conductivity decreased with time for all samples. Hence, this study demonstrated why the γ-irradiation technique can be considered a powerful way to treat, recover, and/or enhance the electrical features of the tested epoxy hybrid nanocomposites.
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γ-辐照和样品老化对环氧树脂/氧化锌/CB 混合纳米复合材料交流电特性的影响
本文旨在研究伽马辐照和样品老化对混合环氧树脂交流电特性的影响,这些影响是频率、温度和(氧化锌)ZnO 含量(0、0.049、0.099、0.149 和 0.199 wt)与 0.001 wt 导电(炭黑)CB 纳米粒子的函数关系。辐照过程在室温下进行,在伽马射线室中使用平均能量为 1.25 MeV 的钴 60 源,剂量分别为 100、750 和 1000 Gy。经过数年的样品制备,最初研究了纳米复合材料的交流电特性,包括阻抗、介电常数、介电损耗、电导率和活化能。随后,对收集到的经验数据进行了伽马辐照前后的分析。结果表明,将样品暴露于不同剂量的伽马射线会对这些交流电特性产生显著影响。研究发现,能隙随着伽马射线剂量的增加而减小。这可能是由于伽马射线辐照过程通过加强金属与聚合物的结合,引起环氧杂化纳米复合材料结构的变化,从而导致杂化纳米复合材料内部释放出更多的自由电子。此外,样品老化结果表明,所有样品的交流导电率都随着时间的推移而降低。因此,本研究证明了为什么γ-辐照技术可被视为处理、恢复和/或增强所测试的环氧杂化纳米复合材料电气特性的一种有效方法。
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