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首页> 外文期刊>Surface Science >Dissociative adsorption of molecular deuterium and thermal stability onto hydrogenated, bare and ion beam damaged poly- and single crystalline diamond surfaces
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Dissociative adsorption of molecular deuterium and thermal stability onto hydrogenated, bare and ion beam damaged poly- and single crystalline diamond surfaces

机译:分子氘的解离吸附和热稳定性在氢化,裸露和离子束损坏的多晶和单晶金刚石表面上

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摘要

In this work we report on dissociative adsorption of deuterium (D-2) on bare, hydrogenated and ion beam bombarded polycrystalline and single crystalline diamond surfaces. Polycrystalline diamond films with an average grain size of similar to 300 nm were deposited on silicon substrates by hot filament chemical vapor deposition technique from methane/hydrogen gas mixture. Deposited films were characterized using Raman spectroscopy, atomic force microscopy and scanning electron microscopy to estimate the phase composition and microstructure. High resolution electron energy loss spectroscopy and direct recoil spectrometry were used to study hydrogen (deuterium) bonding configuration of the upper surface region. Near surface amorphization was achieved by 1 keV Ar+ implantation at similar to 1 x 10(15) ions/cm(2) at room temperature (RT). As deposited and Ar+ bombarded films are annealed to 500-1000 degrees C in ultra-high vacuum conditions and also under D-2 partial pressure of 5 x 10(-6) Torr. For comparison, key experiments were repeated on the single crystal (100) diamond. Our results clearly show the preferential dissociative adsorption of D-2 on low hybridized carbon (sp/sp(2)) states with activation temperature as low as RT, but with a lower thermal stability compared to pure diamond C-D bonds. (C) 2015 Elsevier B.V. All rights reserved.
机译:在这项工作中,我们报告了氘(D-2)在裸露,氢化和离子束轰击的多晶和单晶金刚石表面上的解离吸附。通过热丝化学气相沉积技术,从甲烷/氢气混合物中,将平均粒径接近300 nm的多晶金刚石膜沉积在硅基板上。使用拉曼光谱,原子力显微镜和扫描电子显微镜对沉积的薄膜进行表征,以估计相组成和微观结构。高分辨率电子能量损失光谱法和直接反冲光谱法用于研究上表面区域的氢(氘)键构型。在室温(RT)下,通过1 keV Ar +注入以类似于1 x 10(15)离子/ cm(2)的方式实现近表面非晶化。在超高真空条件下以及在D-2分压为5 x 10(-6)Torr的条件下,将沉积的Ar +轰击薄膜退火至500-1000摄氏度。为了进行比较,对单晶(100)金刚石重复了关键实验。我们的结果清楚地显示了D-2在低杂化碳(sp / sp(2))状态下的优先解离吸附,活化温度低至RT,但与纯金刚石C-D键相比,其热稳定性较低。 (C)2015 Elsevier B.V.保留所有权利。

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