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Laser-induced transformation of graphitic materials to two-dimensional graphene-like structures at ambient conditions

机译:在环境条件下激光诱导的石墨材料转化到二维石墨烯样结构

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摘要

Laser processing of carbon compounds towards the formation of graphene-based structures gains ground in view of the practicality that lasers offer against other conventional graphene preparation methods. The current work explores the viability of low-cost lasers, operating at ambient conditions, for the transformation of various graphitic materials to structures with graphene-like atomic arrangements. Starting materials are at two opposing sides. On one side stands the typical graphite crystal with Bernal stacking and strong sp(2) character, while nanocrystalline graphitic powders are also investigated. It is demonstrated that graphene-like structures can be prepared either by starting from a well-organized Bernal-stacked network or by irradiating nanocrystalline carbon. The current findings document that laser processing at minimal chamber conditions shows high potential for preparing high-quality graphene-based structures starting from low-cost materials. Apart from being scalable, the proposed method is adaptable to current technological platforms emerging as a viable and eco-friendly graphene production technology.
机译:考虑到激光对抗其他常规石墨烯制备方法的实用性,激光加工基于石墨烯的结构增益的基础结构。目前的工作探讨了低成本激光器的可行性,在环境条件下操作,用于将各种石墨材料转换为具有石墨烯原子布置的结构。起始材料是两个相对的侧面。在一侧替代典型的石墨晶体,具有Bernal堆叠和强SP(2)个性,而纳米晶的石墨粉末也被研究。结果证明,石墨烯结构可以通过从有组织的伯纳尔堆叠网络开始或通过照射纳米晶碳来制备。当前调查结果文献,即最小腔室条件下的激光加工显示出从低成本材料开始制备高质量石墨烯的结构的高电位。除了可扩展外,该方法还适用于当前的技术平台,作为一种可行和环保的石墨烯生产技术。

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