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首页> 外文期刊>The journal of physical chemistry, C. Nanomaterials and interfaces >Morphology Evolution of Graphene during Chemical Vapor Deposition Growth: A Phase-Field Theory Simulation
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Morphology Evolution of Graphene during Chemical Vapor Deposition Growth: A Phase-Field Theory Simulation

机译:化学气相沉积生长过程中石墨烯的形态学演化:基础理论模拟

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In chemical vapor depositiongrowth, depending on the growth condition, graphene islands present various shapes, such as circular, hexagonal, square, rectangular star-like, and fractal. We present a systematic phase-field model study to explore the role of three key factors, carbon flux, precursor concentration on the metal surface, and diffusion of carbon precursors, in the determination of the graphene domain shape. We find that the size of the depletion zone, that is, the area with a carbon precursor concentration gradient around the circumference of the growing graphene island, is of critical importance. In case of no depletion zone or if the size of the depletion zone is much larger than that of the graphene island, the graphene island will present the shape of a regular hexagon. However, star-like graphene islands will form if the size of the depletion zone is comparable to that of the graphene island. Further increasing the size of the graphene island will lead to a fractal-like graphene island with multiscaled branches. Although an extremely small depletion zone will lead to a graphene island with a regular shape, its edges are found to be rough. The three key parameters affect the shape of graphene by tuning the size of the depletion zone. Based on this study, a series of experimental puzzles are properly explained and the conditions for growing high-quality graphene emerge.
机译:在化学气相沉积生长中,取决于生长条件,石墨烯岛存在各种形状,例如圆形,六边形,方形,矩形星状和分形。我们提出了一种系统的阶段式模型研究,探讨了三个关键因素,碳通量,金属表面上的前体浓度以及碳前体的扩散的作用,在图石墨域形状的测定中。我们发现耗尽区的大小,即,在生长石墨烯岛的圆周周围的碳前体浓度梯度的区域具有至关重要的重要性。在没有耗尽区或耗尽区的尺寸远大于石墨烯岛的情况下,石墨烯岛将呈现普通六边形的形状。然而,如果耗尽区的尺寸与石墨烯岛相当,则将形成星形石墨烯岛。进一步增加石墨烯岛的尺寸将导致具有多尺寸分支的分形状石墨烯岛。尽管极小的耗尽区将导致具有规则形状的石墨烯岛,但其边缘被发现粗糙。通过调整耗尽区的尺寸,三个关键参数影响石墨烯的形状。基于这项研究,一系列实验难题得到了适当的解释,并且出现了高质量石墨烯的条件。

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