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Upcycling Waste Lard Oil into Vertical Graphene Sheets by Inductively Coupled Plasma Assisted Chemical Vapor Deposition

机译:通过电感耦合等离子体辅助化学气相沉积法将废猪油循环成垂直石墨烯片

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摘要

Vertical graphene (VG) sheets were single-step synthesized via inductively coupled plasma (ICP)-enhanced chemical vapor deposition (PECVD) using waste lard oil as a sustainable and economical carbon source. Interweaved few-layer VG sheets, H2, and other hydrocarbon gases were obtained after the decomposition of waste lard oil. The influence of parameters such as temperature, gas proportion, ICP power was investigated to tune the nanostructures of obtained VG, which indicated that a proper temperature and H2 concentration was indispensable for the synthesis of VG sheets. Rich defects of VG were formed with a high ID/IG ratio (1.29), consistent with the dense edges structure observed in electron microscopy. Additionally, the morphologies, crystalline degree, and wettability of nanostructure carbon induced by PECVD and ICP separately were comparatively analyzed. The present work demonstrated the potential of our PECVD recipe to synthesize VG from abundant natural waste oil, which paved the way to upgrade the low-value hydrocarbons into advanced carbon material.
机译:使用废猪油作为可持续且经济的碳源,通过电感耦合等离子体(ICP)增强的化学气相沉积(PECVD)一步合成垂直石墨烯(VG)片。废猪油分解后,得到交织的几层VG薄板,H2和其他碳氢化合物气体。研究了温度,气体比例,ICP功率等参数对VG纳米结构的影响,表明适当的温度和氢气浓度对VG片材的合成是必不可少的。 VG的丰富缺陷形成的ID / IG比高(1.29),与电子显微镜中观察到的致密边缘结构一致。另外,比较了分别由PECVD和ICP诱导的纳米结构碳的形貌,结晶度和可湿性。目前的工作证明了我们的PECVD配方可以从丰富的天然废油中合成VG的潜力,这为将低值碳氢化合物升级为高级碳材料铺平了道路。

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