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Temperature effect on the nucleation of graphene on Cu (111)

机译:温度对Cu(111)上石墨烯成核的影响

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Repeated thermal cycling by using an organic precursor is shown to be a successful technique for growing graphene on metal substrates. Having control on this process is of vital importance in producing large areas of high quality graphene with well-ordered surface characteristics, which leads us to investigate the effect of temperature on the microscopic mechanisms behind this process. Apart from being an important factor in the dissociation of the organic precursor and promoting the reactions taking place on the surface of the catalyst, temperature also plays a major role in the structure of the catalyst surface. First, we used eight thermal cycles to successfully grow graphene on the surface of Cu (111). Then, we employed Ab Initio Molecular Dynamics (AIMD) simulations to study graphene island alignment evolution at two temperatures. The results shed light on our experimental observations and those reported in the literature and point to the effectiveness of controlled thermal cycling in producing high quality graphene sheets on transition metal catalyst surfaces.
机译:通过使用有机前体重复进行热循环是一种在金属衬底上生长石墨烯的成功技术。控制该过程对于生产大面积具有良好有序表面特征的高质量石墨烯至关重要,这使我们研究了温度对该过程背后的微观机理的影响。温度除了是有机前体的离解和促进在催化剂表面上发生的反应的重要因素外,温度在催化剂表面的结构中也起着重要作用。首先,我们使用八个热循环成功地在Cu(111)表面上生长了石墨烯。然后,我们采用了从头算分子动力学(AIMD)的模拟方法,研究了在两个温度下石墨烯岛取向的演变。该结果揭示了我们的实验观察结果以及文献报道的结果,并指出了受控的热循环在过渡金属催化剂表面上生产高质量石墨烯片材的有效性。

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