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氮气氛下金刚石薄膜生长过程中的光发射谱研究

李灿华1,2; 廖源2; 常超2; 王冠中1,2; 马玉蓉2; 方容川2   

  1. 1. 中国科技大学结构分析开放研究实验室; 中国科技大学物理系, 合肥 230026
  • 收稿日期:2000-01-30 修回日期:2000-03-08 出版日期:2001-01-20 网络出版日期:2001-01-20

Optical Emission Spectroscopy for Hot Filament Diamond Growth Process with Nitrogen Addition

LI Can-Hua1,2; LIAO Yuan2; CHANG Chao2; WANG Guan-Zhong1,2; MA Yu-Rong2; FANG Rong-Chuan 2   

  1. 1. Structure Research Laboratory; 2. Physics Department; University of Science & Technology of China; Hefei 230026; China
  • Received:2000-01-30 Revised:2000-03-08 Published:2001-01-20 Online:2001-01-20

摘要: 利用原位光发射谱对衬底附近的化学气相性质进行了研究.研究表明,氮气的引入使得金刚石生长的气相化学和表面化学性质发生了很大变化.含氮基团的萃取作用提高了金刚石表面氢原子的脱附速率,从而提高了金刚石膜的生长速率.而含氮基团的选择吸附使金刚石(100)取向变得化学糙化,这种化学糙化使得(100)晶面生长速率远大于其它晶面,最终使金刚石薄膜呈现(100)织构.还利用化学气相沉积方法研究了氮气浓度对金刚石生长的影响,结果与光发射谱分析是一致的.

关键词: 热丝CVD, 光发射谱, 含氮基团, 金刚石生长

Abstract: Optical emission spectra were applied to detect the chemical radicals in the system. It is shown that
the additional nitrogen makes the chemical radicals and surface activity of diamond films change tremendously. Nitrogenous species
abstract the atomic hydrogen on the diamond surface and speed up the desorption rate of H, so as to promote the diamond films deposition.
Further more, the selective absorption of nitrogenous species causes the (100) facets chemical roughening, which makes the growth rate of
(100) facet higher than that of other facets and leads to the presence of (100) textured diamond films. The effects of nitrogen
addition in CH4/H2 gas mixtures on morphology, quality and growth rate of polycrystalline diamond films prepared by hot filament chemical
vapor deposition (HFCVD) were also studied. The results agree with the analysis of the optical emission spectra.

Key words: hot filament CVD, optical emission spectra, nitrogenous radicals, diamond growth

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