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GRAPHENE SYNTHESIS ON ULTRATHIN METAL CATALYST FILMS

机译:超薄金属催化剂膜上的石墨烯合成

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Graphene synthesis on ultra-thin catalysts can allow the use of graphene-coated metal films in electronic applications. Graphene coated thin films are expected to offer superior mechanical performance owing to the strength of graphene. However, several factors need to be considered to assure the stability of thin films at the high temperatures required for graphene synthesis. In this work, we present a systematic framework for the selection of thin films (< 1 micron thickness) to be used as catalyst for graphene synthesis. We present our progress towards the rapid synthesis of graphene at 1100°C in less than two minutes, thus avoiding solid state dewetting. The quality of the graphene is assessed by Scanning Electron Microscopy, Raman spectroscopy and indentation. It is shown that these films exhibit higher stiffness and resistance to crack propagation
机译:在超薄催化剂上进行石墨烯合成可以在电子应用中使用石墨烯涂层的金属膜。由于石墨烯的强度,预期石墨烯涂覆的薄膜将提供优异的机械性能。但是,需要考虑几个因素以确保薄膜在石墨烯合成所需的高温下的稳定性。在这项工作中,我们为选择用作石墨烯合成催化剂的薄膜(厚度小于1微米)提供了一个系统的框架。我们介绍了我们在不到两分钟的时间内,在1100°C下快速合成石墨烯的进展,从而避免了固态去湿。石墨烯的质量通过扫描电子显微镜,拉曼光谱和压痕评估。结果表明,这些薄膜具有较高的刚度和抗裂纹扩展性

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