石墨烯
材料科学
化学气相沉积
石墨烯纳米带
纳米技术
化学物理
碳纤维
氧化石墨烯纸
动力学蒙特卡罗方法
石墨烯泡沫
图层(电子)
复合数
蒙特卡罗方法
复合材料
化学
统计
数学
作者
Haibin Sun,Xiao Kong,Hyoju Park,Fengning Liu,Zonghoon Lee,Feng Ding
标识
DOI:10.1002/adma.202107587
摘要
Abstract The morphology of as‐grown graphene in chemical vapor deposition (CVD) experiments is sensitive to the reaction environment. Understanding the mechanism of formation of different graphene morphologies is essential to achieve controlled graphene CVD growth. Here the growth and formation mechanism of adlayer graphene spirals are reported. An adlayer graphene spiral is formed by fast propagation of the tips of spiral arms along the edge of the first graphene layer. The driving force to form spirals is the limited availability of carbon diffusing from the Cu surface through the edge of the first graphene layer. In addition, it is found that graphene onions are formed by overlapping graphene spirals with clockwise and anticlockwise arms. Based on these features, a kinetic Monte Carlo (kMC) method is demonstrated using which all the observed graphene spiral structures are successfully reproduced at the atomic level. This study thus unravels the hither‐to unresolved mechanism of graphene onion growth and paves the way to the controllable growth of few‐layer graphene by increasing the carbon supply at the edge of the first layer graphene.
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