首页> 外文期刊>Chemistry of Materials: A Publication of the American Chemistry Society >Imaging the inside of a Continuous Nanoceramic Synthesizer under Supercritical Water Conditions Using High-Energy SynchrotronX-Radiation
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Imaging the inside of a Continuous Nanoceramic Synthesizer under Supercritical Water Conditions Using High-Energy SynchrotronX-Radiation

机译:使用高能SynchrotronX辐射在超临界水条件下对连续纳米陶瓷合成器内部进行成像

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摘要

Continuous hydrothermal flow synthesis (CHFS) offers a controllable route to the production of nanocrystalline materials. We describe the application of tomographic X-ray methods to image, for the first time, crystallization at the interior of an in operando CHFS reactor. In the experiment, the steady-state formation of nanoparticulate CeO2 was followed: the synthesis proceeds by rapid hydrolysis of cerium ammonium nitrate and hydrothermal coprecipitation in a near/super-critical water environment (T = 340-450 °C, P - 24 MPa). The results identify the location of particle growth with accompanying indications of crystallite size, and also reveal the build-up of material on the reactor wall during long syntheses. The imaging represents a significant achievement in that information of this kind can be gleaned from such an inhospitable environment as that of a CHFS reactor. The novel combination of tomographic angle- and energy-dispersive diffraction employed was particularly appropriate for this in situ study, where the CHFS apparatus could not be rotated (as is required in conventional tomography methods). This imaging capability offers new insights into the synthesis process, which can lead to optimization, better reactor design, and adaptation toward industrial application.
机译:连续水热流合成(CHFS)为纳米晶体材料的生产提供了可控制的途径。我们描述了层析X射线方法在成像中首次在操作CHFS反应器内部成像的应用。在实验中,遵循纳米颗粒CeO2的稳态形成:在近/超临界水环境(T = 340-450°C,P-24 MPa)下,硝酸铈铵的快速水解和水热共沉淀进行了合成。 )。结果确定了晶粒长大的位置,并伴有微晶尺寸的指示,并且还揭示了长时间合成过程中反应器壁上材料的堆积。成像代表了一项重大成就,因为可以从诸如CHFS反应堆这样的恶劣环境中收集此类信息。层析成像角度和能量色散衍射的新颖结合特别适用于这种原位研究,因为在这种研究中CHFS设备无法旋转(这是常规层析成像方法所必需的)。这种成像功能为合成工艺提供了新的见解,可以导致优化,更好的反应器​​设计以及对工业应用的适应性。

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