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Probing the Gas-Phase Dynamics of Graphene Chemical Vapour Deposition using in-situ UV Absorption Spectroscopy

机译:利用原位紫外吸收光谱法探讨石墨烯化学气相沉积的气相动力学

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摘要

The processes governing multilayer nucleation in the chemical vapour deposition (CVD) of graphene are important for obtaining high-quality monolayer sheets, but remain poorly understood. Here we show that higher-order carbon species in the gas-phase play a major role in multilayer nucleation, through the use of ultraviolet (UV) absorption spectroscopy. These species are the volatilized products of reactions between hydrogen and carbon contaminants that have backstreamed into the reaction chamber from downstream system components. Consequently, we observe a dramatic suppression of multilayer nucleation when backstreaming is suppressed. These results point to an important and previously undescribed mechanism for multilayer nucleation, wherein higher-order gas-phase carbon species play an integral role. Our work highlights the importance of gas-phase dynamics in understanding the overall mechanism of graphene growth.
机译:在石墨烯的化学气相沉积(CVD)中控制多层成核的过程对于获得高质量的单层薄板很重要,但仍知之甚少。在这里,我们表明,通过使用紫外线(UV)吸收光谱,气相中的高阶碳物种在多层成核中起着重要作用。这些物质是氢和碳污染物之间反应的挥发产物,这些污染物已从下游系统组件回流到反应室中。因此,当抑制回流时,我们观察到多层成核作用的显着抑制。这些结果表明了多层成核的重要且先前未描述的机理,其中高级气相碳物质起着不可或缺的作用。我们的工作强调了气相动力学在理解石墨烯生长的整体机理中的重要性。

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