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Detection of nanophase at the surface of HFCVD grown diamond films using surface enhanced Raman spectroscopic technique

机译:使用表面增强拉曼光谱技术检测HFCVD生长的金刚石薄膜表面的纳米相

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摘要

Diamond films prepared by hot filament chemical vapour technique were characterised using X-ray diffraction, scanning electron microscopy and surface enhanced Raman spectroscopic technique. Silver was deposited on to diamond thin film under ultra high vacuum conditions and macro-Raman spectra were recorded during the deposition. An asymmetric broadening of the Raman peak at 1332 cm~(-1) and gradual emergence of a new peak at 1240 cm~(-1) with increasing thickness of the silver layer were observed. These observations were explained on the basis of phonon confinement in nanometer-sized crystals. It is proposed that the detected nanophase is present only at the surface and is not a bulk property. The average particle size of the film was estimated from X-ray analysis and also from the symmetric braodening of the 1332 cm~(-1) line in the Raman spectra of the bare sample. The presence of the nanophase was further evidenced by high resolution scanning electron microscopy. The probable mechanism of formation was briefly explored.
机译:利用X射线衍射,扫描电子显微镜和表面增强拉曼光谱技术对通过热丝化学气相法制备的金刚石薄膜进行了表征。在超高真空条件下将银沉积到金刚石薄膜上,并在沉积过程中记录宏观拉曼光谱。随着银层厚度的增加,观察到拉曼峰在1332 cm〜(-1)处不对称展宽,并在1240 cm〜(-1)处逐渐出现新的峰。这些观察结果是根据声子在纳米级晶体中的局限性解释的。提出检测到的纳米相仅存在于表面而不是整体性质。薄膜的平均粒径是通过X射线分析以及裸样品的拉曼光谱中的1332 cm〜(-1)线的对称渗色估算的。高分辨率扫描电子显微镜进一步证明了纳米相的存在。简要探讨了可能的形成机理。

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