期刊论文详细信息
Graded interface models for more accurate determination of van der Waals-London dispersion interactions across grain boundaries
Article
关键词: ELECTRON-ENERGY-LOSS;    PEROVSKITE-TYPE TITANATES;    OPTICAL-PROPERTIES;    SILICON-NITRIDE;    QUANTITATIVE-ANALYSIS;    VACUUM-ULTRAVIOLET;    HAMAKER CONSTANTS;    ATOMIC-STRUCTURE;    BAND-STRUCTURE;    AB-INITIO;   
DOI  :  10.1103/PhysRevB.74.205110
来源: SCIE
【 摘 要 】
Attractive van der Waals-London dispersion interactions between two half crystals arise from local physical property gradients within the interface layer separating the crystals. Hamaker coefficients and London dispersion energies were quantitatively determined for Sigma 5 and near-Sigma 13 grain boundaries in SrTiO3 by analysis of spatially resolved valence electron energy-loss spectroscopy (VEELS) data. From the experimental data, local complex dielectric functions were determined, from which optical properties can be locally analyzed. Both local electronic structures and optical properties revealed gradients within the grain boundary cores of both investigated interfaces. The results show that even in the presence of atomically structured grain boundary cores with widths of less than 1 nm, optical properties have to be represented with gradual changes across the grain boundary structures to quantitatively reproduce accurate van der Waals-London dispersion interactions. London dispersion energies of the order of 10% of the apparent interface energies of SrTiO3 were observed, demonstrating their significance in the grain boundary formation process. The application of different models to represent optical property gradients shows that long-range van der Waals-London dispersion interactions scale significantly with local, i.e., atomic length scale property variations.
【 授权许可】

Free   

  文献评价指标  
  下载次数:0次 浏览次数:1次