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Compact and Efficient HFCVD for Electronic Grade Diamonds and Related Materials

机译:用于电子级钻石和相关材料的紧凑型高效HFCVD

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A compact and efficient hot filament chemical vapor deposition system has been designed for growing electronic-grade diamond and related materials. We report here the effect of substrate rotation on quality and uniformity of HFCVD diamond films on 2" wafers, using two to three filaments with power ranging from 500 to 600 Watt. Diamond films have been characterized using x-ray diffraction, Raman Spectroscopy, scanning electron microscopy and atomic force microscopy. Our results indicate that substrate rotation not only yields uniform films across the wafer, but crystallites grow larger than without sample rotation. Well-faceted microcrystals are observed for wafers rotated at 10 rpm. We also find that the Raman spectrum taken from various locations indicate no compositional variation in the diamond film and no significant Raman shift associated with intrinsic stresses. Results are discussed in the context of growth uniformity of diamond film to improve deposition efficiency for wafer-based electronic applications.
机译:一种紧凑和有效的热丝化学气相沉积系统已被设计用于生长电子级金刚石和相关材料。我们在这里报告上2" 的晶片基板旋转的上HFCVD金刚石膜的质量和均匀性的影响,使用两到三个灯丝功率为500至600瓦。金刚石薄膜使用X射线衍射进行了表征,拉曼光谱,扫描电子显微镜和原子力显微镜。我们的结果表明,基片的旋转不仅产生在整个晶片均匀的膜,但微晶生长比没有样品旋转大。嗯面微晶观察的晶片以10rpm旋转。我们还发现,所述拉曼从不同位置拍摄光谱表明在金刚石膜和没有组成变化与固有应力有关无显著拉曼位移。结果列在金刚石膜的生长的均匀性的上下文中讨论,以改善基于晶片的电子应用沉积效率。

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