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Influence of gas phase equilibria on the chemical vapor deposition of graphene

机译:气相平衡对石墨烯化学气相沉积的影响

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摘要

We have investigated the influence of gas phase chemistry on the chemical vapor deposition of graphene in a hot wall reactor. A new extended parameter space for graphene growth was defined through literature review and experimentation at low pressures (≥0.001 mbar). The deposited films were characterized by scanning electron microscopy, Raman spectroscopy, and dark field optical microscopy, with the latter showing promise as a rapid and nondestructive characterization technique for graphene films. The equilibrium gas compositions have been calculated across this parameter space. Correlations between the graphene films grown and prevalent species in the equilibrium gas phase revealed that deposition conditions associated with a high acetylene equilibrium concentration lead to good quality graphene deposition, and conditions that stabilize large hydrocarbon molecules in the gas phase result in films with multiple defects. The transition between lobed and hexagonal graphene islands was found to be linked to the concentration of the monatomic hydrogen radical, with low concentrations associated with hexagonal islands.
机译:我们已经研究了气相化学对热壁反应器中石墨烯化学气相沉积的影响。通过文献综述和低压(≥0.001mbar)实验,为石墨烯生长定义了新的扩展参数空间。沉积的薄膜通过扫描电子显微镜,拉曼光谱和暗场光学显微镜进行表征,后者显示出有望作为石墨烯薄膜的一种快速且无损的表征技术。已在此参数空间中计算出了平衡气体成分。石墨烯薄膜的生长与平衡气相中的普遍物种之间的相关性表明,与高乙炔平衡浓度相关的沉积条件可导致高质量的石墨烯沉积,而稳定气相中大烃分子的条件会导致薄膜具有多个缺陷。发现凸角和六边形石墨烯岛之间的过渡与单原子氢自由基的浓度有关,而六边形岛的浓度较低。

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