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首页> 外文期刊>Surface & Coatings Technology >Mechanisms of particle ejection from free-standing two-layered graphene stimulated by keV argon gas cluster projectile bombardment - Molecular dynamics study
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Mechanisms of particle ejection from free-standing two-layered graphene stimulated by keV argon gas cluster projectile bombardment - Molecular dynamics study

机译:通过KEV氩气群射弹轰击的独立双层石墨烯的颗粒喷射机制 - 分子动力学研究

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Molecular dynamics computer simulations are employed to investigate processes leading to particle ejection from free-standing two-layered graphene irradiated by keV argon gas cluster projectiles. The effect of the primary kinetic energy and the projectile size on the ejection process is investigated. It has been found that both these parameters have a pronounced influence on the emission of particles. The interaction between argon projectiles and graphene is strong regardless of graphene's minimal thickness. A significant portion of the primary kinetic energy is deposited into the sample. Part of this energy is used for particle emission, which is substantial. As a result, circular nanopores of various dimensions are created depending on the bombardment conditions. A major part of the deposited energy is also dispersed in a form of acoustic waves. Different mechanisms leading to particle ejection and defect formation are identified depending on the projectile energy per atom. The implications of the results to a novel analytical approach in Secondary Ion Mass Spectrometry based on ultrathin free-standing graphene substrates and a transmission geometry are discussed.
机译:使用分子动力学计算机模拟来研究导致颗粒喷射的过程,导致由Kev氩气簇射弹照射的自由静态的双层石墨烯。研究了初级动能和射弹尺寸对喷射过程的影响。已经发现,两种参数对粒子的发射具有明显的影响。无论石墨烯最小的厚度如何,氩气射弹和石墨烯之间的相互作用都很强劲。将主要动能的大部分沉积到样品中。该能量的一部分用于颗粒发射,这是显着的。结果,根据轰击条件,产生各种尺寸的圆形纳米孔。沉积能量的主要部分也以声波的形式分散。导致颗粒喷射和缺陷形成的不同机制根据每个原子的射弹能量来识别。讨论了基于超常设石墨烯基板的二次离子质谱和透射几何的二次离子质谱中的新型分析方法的影响。

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