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Single-and few-layer graphene growth on stainless steel substrates by direct thermal chemical vapor deposition

机译:通过直接热化学气相沉积法在不锈钢基材上单层和多层石墨烯生长

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摘要

Increasing interest in graphene research in basic sciences and applications emphasizes the need for an economical means of synthesizing it. We report a method for the synthesis of graphene on commercially available stainless steel foils using direct thermal chemical vapor deposition. Our method of synthesis and the use of relatively cheap precursors such as ethanol (CH _3CH_2OH) as a source of carbon and SS 304 as the substrate proved to be economically viable. The presence of single-and few-layer graphene was confirmed using confocal Raman microscopy/spectroscopy. X-ray photoelectron spectroscopic measurements were further used to establish the influence of various elemental species present in stainless steel on graphene growth. The role of cooling rate on surface migration of certain chemical species (oxides of Fe, Cr and Mn) that promote or hinder the growth of graphene is probed. Such analysis of the chemical species present on the surface can be promising for graphene based catalytic research.
机译:在基础科学和应用中对石墨烯研究的兴趣日益增加,这表明需要一种经济的方法来合成石墨烯。我们报告了一种使用直接热化学气相沉积法在商用不锈钢箔上合成石墨烯的方法。我们的合成方法和使用相对便宜的前驱物(例如乙醇(CH _3CH_2OH))作为碳源,SS 304作为底物在经济上是可行的。使用共聚焦拉曼显微镜/光谱法确认了单层和多层石墨烯的存在。还使用X射线光电子能谱测量来确定不锈钢中存在的各种元素物种对石墨烯生长的影响。探讨了冷却速率对促进或阻碍石墨烯生长的某些化学物质(Fe,Cr和Mn的氧化物)的表面迁移的作用。对于基于石墨烯的催化研究,对存在于表面上的化学物种的这种分析可能是有希望的。

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