Niemczyk Agata, Fryska Sebastian, Moszyński Dariusz, Deacu Daniel, Kochmański Paweł, Baranowska Jolanta
Department of Materials Technology, Faculty of Mechanical Engineering and Mechatronics, West Pomeranian University of Technology in Szczecin, Piastów Avenue 19, 70-310 Szczecin, Poland.
Department of Chemical and Environment Engineering, Faculty of Chemical Technology and Engineering, West Pomeranian University of Technology in Szczecin, Pułaskiego 10, 70-322 Szczecin, Poland.
Molecules. 2025 Mar 26;30(7):1474. doi: 10.3390/molecules30071474.
PTFE/C composite targets were ablated using a pulsed electron beam of different energies to evaluate the suitability of this technique for composite coating deposition. Composite materials with two different carbon fillers and their contents (graphite-10 wt.% and coal coke-35 wt.%) were used. A PTFE target was used as reference material. The chemical and physical structure of the coatings was investigated using FTIR, XPS, and XRD. The topography was investigated using optical microscopy, SEM, and AFM. In addition, the contact angle and surface energy of the coatings were evaluated. It was shown that the presence of carbon particles in the polymer matrix decreased the deposition rate but greatly reduced the degradation of PTFE. It is hypothesized that the high content of conductive particles reduces the capability of the pulsed electron beam process to maintain the integrity of the filler particles during the coating deposition process.
使用不同能量的脉冲电子束烧蚀聚四氟乙烯/碳(PTFE/C)复合材料靶材,以评估该技术用于复合涂层沉积的适用性。使用了含有两种不同碳填料及其含量(石墨-10重量%和煤焦-35重量%)的复合材料。使用聚四氟乙烯靶材作为参考材料。利用傅里叶变换红外光谱(FTIR)、X射线光电子能谱(XPS)和X射线衍射(XRD)研究涂层的化学和物理结构。利用光学显微镜、扫描电子显微镜(SEM)和原子力显微镜(AFM)研究形貌。此外,还评估了涂层的接触角和表面能。结果表明,聚合物基体中碳颗粒的存在降低了沉积速率,但大大减少了聚四氟乙烯的降解。据推测,高含量的导电颗粒降低了脉冲电子束工艺在涂层沉积过程中保持填料颗粒完整性的能力。