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Comparative electron diffraction study of the diamond nucleation layer on Ir(OOl)

机译:Ir(OOl)上金刚石成核层的比较电子衍射研究

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The carbon layer formed during the bias enhanced nucleation (BEN) procedure on iridium has been studied by different electron diffraction techniques. In reflection high energy electron diffraction (RHEED) and low energy electron diffraction (LEED) the carbon nucleation layer does not give any indication of crystalline diamond even if the presence of domains proves successful nucleation. In contrast, X-ray photoelectron diffraction (XPD) shows a clear C 1s pattern when domains are present after BEN. The anisotropy in the Ir XPD patterns is reduced after BEN while the fine structure is essentially identical compared to a single crystal Ir film. The change in the Ir XPD patterns after BEN can be explained by the carbon layer on top of a crystallographically unmodified Ir film. The loss and change in the fine structure of the C 1s patterns as compared to a single crystal diamond film are discussed in terms of mosaicity and a defective structure of the ordered fraction within the carbon layer. The present results suggest that the real structure of the BEN layer is more complex than a pure composition of small but perfect diamond crystallites embedded in an amorphous matrix.
机译:已经通过不同的电子衍射技术研究了在偏置增强成核(BEN)过程中在铱上形成的碳层。在反射高能电子衍射(RHEED)和低能电子衍射(LEED)中,即使晶畴的存在证明成功成核,碳成核层也不能给出任何结晶金刚石的迹象。相反,当在BEN之后存在畴时,X射线光电子衍射(XPD)显示清晰的C 1s图案。 BEN后,Ir XPD图案中的各向异性降低,而与单晶Ir膜相比,其精细结构基本相同。 BEN之后Ir XPD图案的变化可以用未经晶体学修饰的Ir膜顶部的碳层来解释。从镶嵌性和碳层内有序部分的缺陷结构方面,讨论了与单晶金刚石膜相比,C 1s图案的精细结构的损失和变化。目前的结果表明,BEN层的真实结构比嵌入非晶基体中的小而完美的金刚石微晶的纯组成要复杂得多。

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