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Kinetically driven graphite-like to diamond-like carbon transformation in low temperature laminar diffusion flames

机译:在低温层状扩散火焰中动力学地驱动的石墨料到金刚石状碳变换

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Historically, the synthesis of diamond and graphite via combustion flames stands out as a simplified, scalable and inexpensive approach. Unfortunately, this method is not beneficial for industrial applications in coatings due to limitations related with the high flame and substrate temperatures. Here, we report novel findings about the formation mechanism of graphite-like and diamond-like supported nanostructures in low temperature laminar diffusion flames. Both materials are formed upon controllable combustion at atmospheric pressure of a cylindrical paper wick immersed in rapeseed oil. An accurate adjustment of the incident air flow and the amount of available fuel allow deposition of carbon soot or diamond-like carbon (DLC). The DLC formation is favorable in a narrow stoichiometric range at flame temperatures within similar to 210-260 degrees C and beyond this range the particles precipitate as soot. The comparative structural analysis using scanning electron microscopy, Raman spectroscopy, X-ray photoelectron spectroscopy and transmission electron microscopy, along with the full thermal and stoichiometric profiles for the chosen combustion conditions, suggest a kinetically driven graphite-to-diamond transformation rather than a thermodynamically induced phase transition. Our results reveal a new direction in the principles of graphite and diamond formation in flames that could be applied to surmount the existing shortcomings in flame synthesis. (C) 2017 Elsevier B.V. All rights reserved.
机译:从历史上看,通过燃烧火焰的金刚石和石墨的合成脱颖而出,是一种简化,可扩展且廉价的方法。遗憾的是,由于与高火焰和基板温度有关的限制,这种方法对涂层中的工业应用没有有益。在这里,我们报告了关于低温层状扩散火焰中石墨状和金刚石状负载纳米结构的形成机制的新发现。两种材料形成在可控制的燃烧下,在浸入油菜籽油中的圆柱形纸芯的大气压下。精确调整入射气流和可用燃料的量允许沉积碳烟灰或金刚石碳(DLC)。 DLC形成在类似于210-260℃的火焰温度下的窄化学计量范围内,并且在该范围之外,颗粒沉淀为烟灰。使用扫描电子显微镜,拉曼光谱,X射线光电子能谱和透射电子显微镜的对比结构分析,以及所选择的燃烧条件的全热和化学计量曲线,表明动态驱动的石墨到金刚石变换而不是热力学诱导相转变。我们的结果揭示了石墨和钻石形成原则的新方向,可以应用于超越火焰综合的现有缺点。 (c)2017 Elsevier B.v.保留所有权利。

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