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X-ray diffraction analyses of 3D MgO-based replicas of diatom microshells synthesized by a low-temperature gas/solid displacement reaction

机译:低温气/固置换反应合成的硅藻微壳3D基于MgO的复制品的X射线衍射分析

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摘要

The nanostructural features of the gas-phase displacement reaction 2Mg(g) + SiO_2 → 2MgO(s) + {Si}, where SiO_2 is in the form of diatom shells were studied via X-ray diffraction and Fourier methods. Diatomaceous powder heated to 700℃ in a sealed graphite cell in the presence of Mg vapor formed MgO via a displacement reaction. Warren-Averbach analysis performed on samples reacted for different times showed an initial sharp MgO grain size distribution which broadened with time. New MgO crystallization was shown to occur until about 60 min, whereafter only MgO grain growth occurred. Median MgO crystallite size increased from 7.5 to 24.9 nm during this period, whereas microstrain decreased dramatically past 60 min annealing time.
机译:通过X射线衍射和傅里叶法研究了气相置换反应2Mg(g)+ SiO_2→2MgO(s)+ {Si}的纳米结构特征,其中SiO_2为硅藻壳的形式。硅藻土粉末在密闭的石墨室中,在Mg蒸气存在下加热到700℃,通过置换反应生成MgO。对不同时间反应的样品进行的Warren-Averbach分析显示,初始的尖锐MgO晶粒尺寸分布随时间变宽。显示新的MgO结晶发生直到约60分钟,此后仅发生MgO晶粒长大。在此期间,中值MgO晶粒尺寸从7.5 nm增加到24.9 nm,而经过60分钟的退火时间,微应变急剧下降。

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