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Nitrogen-doped graphenic foam synthesized by solvothermal-based process: Effect of pyrolysis temperature on the material properties

机译:基于溶剂的过程合成的氮掺杂的塑料泡沫:热解温对材料性能的影响

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摘要

Extraordinary properties of graphenic materials no longer need to be demonstrated. Nitrogen doping has been known to broaden the graphene application fields, especially for catalysis purposes. The present work reports a solvothermal-based process for the synthesis of a nitrogen-doped graphenic foam with up to 2.6 at.% nitrogen, exhibiting the inherent properties of graphenic materials with high textural properties and surface areas as high as 2243 m( 2) g(-1). This study aims to give a better understanding of the influence of the pyrolysis treatment on the properties of the produced material for optimization of the synthesis in view to fuel cell applications. Several cross-linked techniques such as transmission electron microscopy, thermogravimetric analysis, Raman spectroscopy, nitrogen physisorption at 77 K and X-ray photoelectron spectroscopy have been employed to give a complete, precise characterization of the elaborated N-doped graphenic foams, leading to optimized conditions for the pyrolysis step. Pyrolysis at 850 degrees C has been found to allow the best compromise in terms of purity, homogeneity and crystallinity, with high fractions of pyrrolic, pyridinic and graphitic N-substitution that are known to greatly enhance the material catalytic properties. An oxidative degradation process was also evidenced for temperatures above 875 degrees C, leading to far lower graphene amounts.
机译:不再需要说明石墨材料的非凡性质。已知氮掺杂是为了拓宽石墨烯应用领域,特别是用于催化目的。本作者报告了一种基于溶性的基于硝基掺杂的石墨泡沫的方法,该氮掺杂的氮气泡沫含量高达2.6.%氮,表现出具有高纹理性质和表面积高达2243米(2)的石墨材料的固有性质g(-1)。本研究旨在更好地理解热解处理对生产材料的性质的影响,以便燃料电池应用优化合成。已经采用了几种交联技术,例如透射电子显微镜,热重分析,拉曼光谱,77k和X射线光电子能谱的氮原料,用于提供精细的N掺杂石墨泡沫的完整,精确表征,导致优化热解步骤的条件。已经发现850℃的热解,以允许在纯度,均匀性和结晶度方面允许最佳折衷,并且已知具有大量的丙醇,吡啶和石墨N-取代,所以已知大大提高材料催化性质。氧化降解过程也显着于875摄氏度高于875℃的温度,导致较低的石墨烯量。

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