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The Debye Characteristic Temperature of Nanodiamond Thin Films

机译:纳米金刚石薄膜的德拜特征温度

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The Debye characteristic temperature is a useful parameter of nanodiamond thin films. In this paper, the Dcbye characteristic temperature of diamond thin films is studied through X-ray diffraction intensity at a fixed temperature. From x-ray diffraction, we can get the average crystallite size of diamond thin film. By the method of Xueshan Lu and Jingkui Liang, the Debye-Waller factor and Debye temperature are calculated, they are B=0.010937 nm~2 and Θ_D=527.95K, the Debye temperature is about one-fourth of the Debye characteristic temperature of the bulk diamond single crystal (about 2200K). The relationship between crystal size and Debye characteristic temperature is also discussed. The Debye characteristic temperature depends on particle size. When the diamond changes from bulk diamond to diamond films, the crystal size of diamond becomes smaller, so the Debye characteristic temperature becomes lower. This means that the atom binding force becomes weak, and it can increase the activity of nanodiamond thin films.
机译:德拜特征温度是纳米金刚石薄膜的有用参数。本文通过固定温度下的X射线衍射强度研究金刚石薄膜的Dcbye特征温度。通过X射线衍射,我们可以获得金刚石薄膜的平均微晶尺寸。用卢雪山和梁静奎的方法计算出德拜-沃勒因子和德拜温度,它们分别为B = 0.010937 nm〜2和Θ_D= 527.95K,德拜温度约为德拜特征温度的四分之一。散装钻石单晶(约2200K)。还讨论了晶体尺寸与德拜特征温度之间的关系。德拜特征温度取决于粒度。当金刚石从块状金刚石变为金刚石膜时,金刚石的晶体尺寸变小,因此德拜特征温度降低。这意味着原子结合力变弱,并且可以增加纳米金刚石薄膜的活性。

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