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Atomistic process of electron-stimulated structural ordering in tetrahedral amorphous carbon

机译:四面体无定形碳中电子激发结构有序的原子过程

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To have insight to the atomistic process of graphitic ordering in tetrahedral amorphous carbon films which is induced by irradiation of high-energy electrons, the role of temperature in the graphitization was experimentally studied. The change of electron diffraction patterns before and after irradiation at room temperature indicated graphitic ordering, but irradiation at -170 deg C resulted in disordering. Systematic measurements of the temporal evolution of electron energy loss spectra with irradiation at various elevated temperatures and data analysis based on the Johnson -- Mehl -- Avrami model yielded the activation energy for electron-stimulated ordering of as small as approx 0.09 + - 0.01 eV. The most plausible model to account for all the experimental facts is the dissociative diffusion that is triggered by the electron-stimulated displacement of carbon atoms at the initial sites.
机译:为了洞悉高能电子辐照引起的四面体无定形碳膜中石墨有序化的原子过程,实验研究了温度在石墨化中的作用。室温下辐照前后的电子衍射图谱变化表明石墨有序,但在-170℃下辐照导致无序。在约翰逊-梅尔-阿夫拉米模型的基础上,系统测量电子能量损失谱随时间变化的时间演化以及基于约翰逊-梅尔-阿夫拉米模型的数据分析得出的电子激发有序活化能小至约0.09 +-0.01 eV 。解释所有实验事实的最合理的模型是解离扩散,该解离扩散是由碳原子在初始位置受电子刺激的位移触发的。

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