Physical and Thermal Characterization of CVD Diamond: A Bottoms-up Review

F. Faili, Nicola Palmer, Seajin Oh, D. Twitchen
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引用次数: 3

Abstract

The control of diamond nucleation and the early stages of diamond growth are essential for control of the diamond properties that are sensitive to or directly depend on the film anisotropy, grain size, and microscopic voids in the film. This phenomenon particularly affects the thermal conductivity of thin diamond films. Measuring the thermal conductivity/thermal diffusivity of material like diamond is extremely challenging. In this study we relied of four techniques to evaluate and measure the thermal conductivity of diamond. These included, Laser-Flash Diffusivity, Heated Bar technique, FTIR and FDTR. In combining thermal conductivity measurement techniques with AFM, SEM and TEM review of the near interface, a better insight into the evolution of thermal conductivity from the nucleation surface to bulk has been developed and the results are presented.
CVD金刚石的物理和热特性:自下而上的综述
控制金刚石的成核和金刚石生长的早期阶段是控制金刚石性能的关键,这些性能对薄膜的各向异性、晶粒尺寸和薄膜中的微观空洞敏感或直接依赖。这种现象特别影响金刚石薄膜的导热性。测量金刚石等材料的导热系数/热扩散系数极具挑战性。在这项研究中,我们依靠四种技术来评估和测量金刚石的导热性。这些包括,激光闪光扩散,加热棒技术,FTIR和FDTR。将热导率测量技术与近界面的原子力显微镜、扫描电镜和透射电镜相结合,更好地了解了热导率从成核表面到体的演变过程,并给出了结果。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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