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Surface studies of carbon-based ZnO nanocomposite films

机译:碳基ZnO纳米复合薄膜的表面研究

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摘要

The change in the surface and microstructural properties of pure diamond-like carbon (DLC) matrix when small quantities of ZnO were incorporated during deposition process was investigated in this paper. A 248 nm KrF Pulsed Laser Deposition (PLD) technique was used to fabricate these nanocomposite films. AFM showed that the ZnO grain sizes on the films increased with the increase of ZnO in the films, however, the overall film surfaces were still very smooth with RMS roughness <10 nm. XRD detected peaks at 20 values of 34.4° and 36.4° indicated the presence of (0002) and (0101) planes of ZnO respectively confirming ZnO regions or clusters were present. High resolution XPS confirmed that ZnO and carbon compounds were present, and with an increase in ZnO, the carbon matrix showed a significant decrease in the sp3 content. 514 nm Raman spectroscopy confirmed XPS findings where a single broad peak gradually separated into two separate peaks in the region between 1100 cm{sup}(-1) and 1700 cm{sup}(-1) as the amount of ZnO increased. This suggested a transition in the microstructural properties of the carbon network from diamond-like (high sp{sup}3 content) to graphite-like (high sp{sup}2 content).
机译:研究了在沉积过程中掺入少量ZnO时纯金刚石状碳(DLC)基体的表面和微观结构性质的变化。 248 nm KrF脉冲激光沉积(PLD)技术用于制造这些纳米复合材料薄膜。原子力显微镜(AFM)显示,随着膜中ZnO的增加,膜上ZnO的晶粒尺寸增加,但是,整个膜表面仍然非常光滑,RMS粗糙度<10nm。 XRD检测到的34.4°和36.4°的20个峰表明存在ZnO的(0002)和(0101)面,分别确认了ZnO区域或簇的存在。高分辨率XPS证实存在ZnO和碳化合物,并且随着ZnO的增加,碳基质的sp3含量显着下降。 514 nm拉曼光谱法证实了XPS的发现,其中随着ZnO含量的增加,一个宽峰逐渐在1100 cm {sup}(-1)和1700 cm {sup}(-1)之间的区域内分成两个单独的峰。这表明碳网络的微观结构性质从类金刚石(高sp {sup} 3含量)过渡到类石墨(高sp {sup} 2含量)。

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