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首页> 外文期刊>Journal of Non-Crystalline Solids: A Journal Devoted to Oxide, Halide, Chalcogenide and Metallic Glasses, Amorphous Semiconductors, Non-Crystalline Films, Glass-Ceramics and Glassy Composites >Multi-scale structuration of glasses: Observations of phase separation and nanoscale heterogeneities in glasses by Z-contrast scanning electron transmission microscopy
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Multi-scale structuration of glasses: Observations of phase separation and nanoscale heterogeneities in glasses by Z-contrast scanning electron transmission microscopy

机译:眼镜的多尺度结构:Z扫描电子透射显微镜观察玻璃的相分离和纳米异质性

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摘要

Chemical fluctuations are probed in glasses obtained with different thermal histories using scanning transmission electron microscopy in high angle annular dark field mode. Direct imaging of the glass structure is obtained at the sub-nanometer scale with Z-contrast. Macroscopic glass-in-glass separation is probed in a slowly quenched melt where chemical resolution allows the determination of the regions associated with Zr/Zn atoms. In a quickly cooled glass, exempt of macroscopic phase separation, a segregation of Zr/Zn atoms is still evidenced but on a different length scale, suggesting either the beginnings of glass separation or intrinsic features of the glass structure. Glass inhomogeneities must be taken into account to have a quantitative evaluation of nucleation processes. These "nano"-heterogeneities can be associated with the nucleation of zirconia phases, giving important clues to understand the nucleation pathways and the structural role of nucleating agents in aluminosilicate glasses.
机译:在高角度环形暗场模式下使用扫描透射电子显微镜在具有不同热历史的玻璃中探测化学波动。玻璃结构的直接成像是在具有Z对比度的亚纳米尺度上获得的。在缓慢淬火的熔体中探测宏观玻璃之间的玻璃分离,在该熔体中,化学分辨率可确定与Zr / Zn原子相关的区域。在没有宏观相分离的快速冷却的玻璃中,仍然可以看到Zr / Zn原子的偏析,但是其长度尺度不同,这表明玻璃分离的开始或玻璃结构的固有特征。必须考虑玻璃的不均匀性,才能对成核过程进行定量评估。这些“纳米”异质性可能与氧化锆相的成核有关,为理解硅铝酸盐玻璃中的成核途径和成核剂的结构作用提供了重要线索。

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