辐照
材料科学
热解炭
拉曼光谱
微观结构
透射电子显微镜
化学气相沉积
离子
分析化学(期刊)
化学
纳米技术
复合材料
光学
核物理学
物理
有机化学
色谱法
热解
作者
Shanglei Feng,Yingguo Yang,Li Li,Dongsheng Zhang,Xinmei Yang,Shuo Bai,Huihao Xia,Long Yan,Ping Huai,Xingtai Zhou
摘要
Pyrolytic carbon (PyC) coatings prepared by chemical vapor deposition were irradiated by 300 keV Ar+ ions. Then, atomic force microscopy, synchrotron-based grazing incidence X-ray diffraction, Raman spectroscopy, X-ray photoemission spectroscopy, and transmission electron microscopy were employed to study how Ar+ irradiation affects the microstructure of PyC, including the microstructural damage mechanisms and physics driving these phenomena. The 300 keV Ar+ ion irradiation deteriorated the structure along the c-axis, which increased the interlayer spacing between graphene layers. With increasing irradiation dose, the density of defect states on the surface of PyC coating increases, and the basal planes gradually loses their initial ordering resulting in breaks in the lattice and turbulence at the peak damage dose reaches 1.58 displacement per atom (dpa). Surprisingly, the PyC becomes more textured as it becomes richer in structural defects with increasing irradiation dose.
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