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Rapid Growth of Nanocrystalline Diamond on Single Crystal Diamond for Studies on Materials under Extreme Conditions

机译:纳米晶金刚石在单晶金刚石上的快速生长用于极端条件下的材料研究

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摘要

Early stage nucleation morphologies of spatially localized nanocrystalline diamond (NCD) micro-anvils grown on (100)-oriented single crystal diamond (SCD) anvil surfaces were analyzed and investigated for applications in high pressure studies on materials. NCD was grown on SCD using Microwave Plasma Chemical Vapor Deposition (MPCVD) for brief time intervals ranging from 1–15 minutes. Early stage film morphologies were characterized using scanning electron microscopy (SEM) and Raman spectroscopy and were compared to films grown for several hours. Rapid nucleation and growth of NCD on SCD is demonstrated without any pre-growth seeding of the substrate surface. As grown NCD diamond micro-anvils on SCD were used to generate static pressure of 0.5 Terapascal (TPa) on a tungsten sample as measured by synchrotron x-ray diffraction in a diamond anvil cell. Atomic force microscopy (AFM) analysis after decompression from ultrahigh pressures showed that the detachment of the NCD stage occurred in the bulk of the SCD and not at the interface, suggesting significant adhesive bond strength between nanocrystalline and single crystal diamond.
机译:分析并研究了在(100)定向单晶金刚石(SCD)砧表面上生长的空间局部纳米晶金刚石(NCD)微砧的早期成核形态,并研究了其在材料高压研究中的应用。 NCD使用微波等离子体化学气相沉积(MPCVD)在SCD上生长,时间间隔为1-15分钟。使用扫描电子显微镜(SEM)和拉曼光谱对早期薄膜的形貌进行表征,并将其与生长数小时的薄膜进行比较。证明了NCD在SCD上快速成核和生长,而没有任何预先生长的底物表面播种。随着在SCD上生长的NCD金刚石微砧被用于在钨砧样品上产生0.5兆帕斯卡(TPa)的静压,这是通过在金刚石砧池中通过同步加速器X射线衍射测量的。从超高压减压后的原子力显微镜(AFM)分析表明,NCD阶段的分离发生在SCD的大部分中,而不是在界面处,这表明纳米晶与单晶金刚石之间具有显着的粘合强度。

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