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Determination of the Structure of Carbon Particles Formed when Forming a Polymer Film in a Plasma Chemical Reactor

机译:在等离子体化学反应器中形成聚合物膜时形成的碳颗粒结构的测定

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We study the formation mechanism of carbon nanoparticles with simultaneous formation of a polystyrene film in a AC barrier corona discharge at atmospheric pressure. The importance of the research stems from the need to control the allotropic form of carbon nanoparticles, which affects the physical and technical characteristics of polymer films obtained by this method. It is shown that nucleation of polycrystalline onion-like carbon nanoparticle agglomerates is the basis for graphene flake formation in the corona sheath. Graphene flakes form from these nucleation sites in gas discharge streamers owing to the destruction of monomer molecules remaining in the agglomerates of nucleation sites. It was revealed that the allotropic form of such particles is determined not only by the energy-in this case the barrier corona discharge-but also by the ratio of the duration of its exposure to the characteristic destruction and formation times of covalent bonds participating in the particle process.
机译:我们在大气压下同时形成碳纳米粒子的形成机制,同时形成AC屏障电晕放电中的聚苯乙烯薄膜。研究的重要性源于控制碳纳米粒子的同种异体形式的需要,这影响了通过该方法获得的聚合物膜的物理和技术特征。结果表明,多晶洋葱状碳纳米颗粒附聚物的成核是Corona护套中石墨烯片的基础。由于在核心分子中残留在核心分子中的单体分子破坏,石墨烯剥落形式。揭示了这种颗粒的各种形式的形式不仅通过能量而不是通过能量 - 在这种情况下,屏障电晕放电 - 但也通过其暴露于参与的共价键的特征破坏和形成时间的持续时间的比率。颗粒过程。

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