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Continuous Synthesis of Nanostructured Sheetlike Carbons by Thermal Plasma Decomposition of Methane

机译:甲烷热等离子体分解连续合成纳米片状碳

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Crumpled sheetlike carbons (SLCs) of a quasi-2-D graphite structure are continuously synthesized by thermal decomposition of methane using a dc plasma torch of hollow electrodes type operated in a reversed polarity mode. Field-emission scanning electron microscope images show that the products synthesized solely consist of a great number of individual SLCs, which are stacked with random orientation and interlaced each other with thin edges. The width and height of the nanostructured SLCs ranges from 100 to 150 nm, and the average thickness of their stacked graphene layers is estimated as 10 nm. The material analyses of X-ray diffraction and Brunauer–Emmett–Teller static gas adsorption indicate that the nanosized SLCs synthesized by this new method have excellent physicochemical properties, such as large specific surface area and highly graphitized structure with good crystallization, due to their corrugated sheetlike feature. The SLCs synthesized in such a 2-D graphitic structure would be more robust and versatile in their practical applications to hydrogen reservoir and electrical cell compared with other 1-D structures like carbon nanotubes and nanofibers. Although the detailed growth mechanism of SLCs in the thermal plasma environment is not ascertained, high-temperature atmosphere and strong directional flow of the thermal plasma inside the hollow electrodes of the torch may play an important role in the formation of nanostructured SLCs.
机译:通过使用以反极性模式操作的空心电极类型的dc等离子体炬通过甲烷的热分解,可以连续合成准2-D石墨结构的皱缩片状碳(SLC)。场发射扫描电子显微镜图像显示,合成的产物仅由大量单个SLC组成,这些SLC以无规取向堆叠并且彼此交错且边缘较细。纳米结构的SLC的宽度和高度在100到150 nm之间,其堆叠的石墨烯层的平均厚度估计为10 nm。 X射线衍射和Brunauer-Emmett-Teller静态气体吸附的材料分析表明,通过这种新方法合成的纳米级SLC由于具有波纹状,因此具有出色的理化特性,例如大的比表面积和高度石墨化的结构以及良好的结晶性。片状功能。与其他一维结构(如碳纳米管和纳米纤维)相比,以这种二维石墨结构合成的SLC在其实际应用中对氢储层和电池的应用将更加坚固和通用。尽管尚未确定SLC在热等离子体环境中的详细生长机理,但高温气氛和焊炬中空电极内部热等离子体的强定向流动可能在纳米结构SLC的形成中起重要作用。

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