Rabiee Sahel, Sohrabi Mehdi, Afarideh Hossein
Health Physics and Dosimetry Research Laboratory, Department of Energy Engineering and Physics, Amirkabir University of Technology, Tehran, Islamic Republic of Iran.
Health Physics and Dosimetry Research Laboratory, Department of Energy Engineering and Physics, Amirkabir University of Technology, Tehran, Islamic Republic of Iran.
Appl Radiat Isot. 2024 Mar;205:111187. doi: 10.1016/j.apradiso.2024.111187. Epub 2024 Jan 12.
Metal electrode backing (MEB) material was found to have a significant role on the electrostatic surface charge stability of Teflon polytetrafluoroethylene (PTFE) electret films. PTFE films of different thicknesses were positively and negatively charged by using our home-made modified point-to-plane corona poling rotating systems. Different MEB materials and thicknesses; aluminum, copper, stainless steel, zinc, silver, and gold were applied. The electrostatic surface charge stability of charged PTFE films was monitored for 200 h at similar storage conditions. Proper MEB material enhances the electrostatic surface charge stability of electret films due to the work function of the metal electrodes and high potential barrier formation at the interface of MEB material and electret film. The studies show that thinner MEB materials provide higher electrostatic surface charge stability in PTFE films. Therefore, thinner MEB material with higher work function is an effective compromise for producing electret films with higher electrostatic surface charge stability. The findings are extremely important for the applications of highly stable electret films for different applications in particular for radiation dosimetry with special regards to radon monitoring.
发现金属电极背衬(MEB)材料对聚四氟乙烯(PTFE)驻极体薄膜的静电表面电荷稳定性具有重要作用。使用我们自制的改进型点对面电晕极化旋转系统对不同厚度的PTFE薄膜进行正电荷和负电荷充电。应用了不同的MEB材料和厚度,包括铝、铜、不锈钢、锌、银和金。在相似的储存条件下,对带电PTFE薄膜的静电表面电荷稳定性进行了200小时的监测。合适的MEB材料由于金属电极的功函数以及在MEB材料与驻极体薄膜界面处形成的高势垒,增强了驻极体薄膜的静电表面电荷稳定性。研究表明,较薄的MEB材料在PTFE薄膜中提供更高的静电表面电荷稳定性。因此,具有较高功函数的较薄MEB材料是生产具有更高静电表面电荷稳定性的驻极体薄膜的有效折衷方案。这些发现对于高稳定性驻极体薄膜在不同应用中的应用极为重要,特别是对于与氡监测特别相关的辐射剂量测定。