Pozhidaev Evgenii D, Shaposhnikova Vera V, Tameev Alexey R, Abrameshin Andrey E
National Research University Higher School of Economics, 101000 Moscow, Russia.
Nesmeyanov Institute of Organoelement Compounds of the Russian Academy of Sciences, 119991 Moscow, Russia.
Polymers (Basel). 2019 Dec 19;12(1):13. doi: 10.3390/polym12010013.
The electrical properties of thin films of poly(arylene ether ketone) copolymers (co-PAEKs) with a fraction of phthalide-containing units of 3, 5, and 50 mol% in the main chain were investigated by using radiation-induced conductivity (RIC) measurements. Transient current signals and current-voltage () characteristics were obtained by exposing 20 ÷ 25 μm thick films of the co-PAEKs to monoenergetic electron pulses with energy ranging from 3 to 50 keV in an electric field ranging from 5 to 40 V/μm. The Rose-Fowler-Vaisberg semi-empirical model based on a multiple trapping formalism was used for an analysis of the RIC data, and the parameters of the highly dispersive charge carrier transport were evaluated. The analysis revealed that charge carriers moved in isolation from each other, and the applied electric fields were below the threshold field triggering the switching effect (a reversible high-to-low resistivity transition) in the co-PAEK films. It was also found that the co-PAEK films, due to the super-linear - characteristics, are highly resistant to electrostatic discharges arising from the effects of ionizing radiation. This property is important for the development of protective coatings for electronic devices.
通过辐射诱导电导率(RIC)测量,研究了主链中含邻苯二甲酰单元比例分别为3%、5%和50%摩尔分数的聚(亚芳基醚酮)共聚物(co-PAEKs)薄膜的电学性能。通过在5至40 V/μm的电场中,将厚度为20÷25μm的co-PAEKs薄膜暴露于能量范围为3至50 keV的单能电子脉冲下,获得瞬态电流信号和电流-电压(I-V)特性。基于多重俘获形式的Rose-Fowler-Vaisberg半经验模型用于分析RIC数据,并评估了高度分散的电荷载流子传输参数。分析表明,电荷载流子彼此独立移动,且施加的电场低于触发co-PAEK薄膜中开关效应(可逆的高到低电阻率转变)的阈值场。还发现,由于超线性I-V特性,co-PAEK薄膜对电离辐射效应引起的静电放电具有高度抗性。这一特性对于电子设备保护涂层的开发很重要。