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Chemical Erosion of Diamond-Coated Graphite under Low-Energy Hydrogen Atom Irradiation

机译:Chemical Erosion of Diamond-Coated Graphite under Low-Energy Hydrogen atom Irradiation

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摘要

We experimentally investigate chemical erosion of polycrystalline graphite targets coated with boron-doped diamond (BDD) using an induction plasma containing low-energy, high-atomic-hydrogen flux. Chemical erosion is drastically suppressed by diamond coating the graphite target. The chemical sputtering yield for the BDD layer is about two orders of magnitude lower than that for the graphite target. After exposure in low-temperature hydrogen plasmas, however, the surface morphology of the BDD target is significantly modified. The polycrystalline diamond is eroded near the grain boundary, and many pits with diamond-like shapes are observed on the crystal surface. X-ray photoelectron spectroscopy and Raman spectroscopy reveal that the hydrogen atoms penetrate into the BDD target to a depth of at least ∼20 nm.
机译:我们使用包含低能量,高原子氢通量的感应等离子体,实验研究了掺硼掺杂金刚石(BDD)涂覆的多晶石墨靶材的化学腐蚀。通过用金刚石涂覆石墨靶,可以大大抑制化学腐蚀。 BDD层的化学溅射产率比石墨靶的化学溅射产率低约两个数量级。然而,在低温氢等离子体中暴露后,BDD靶的表面形态被显着改变。多晶金刚石在晶界附近被侵蚀,并且在晶体表面观察到许多具有菱形形状的凹坑。 X射线光电子能谱和拉曼光谱表明,氢原子渗透到BDD靶中的深度至少约为20nm。

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