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High temperature X-ray diffraction studies of the sample heating units

机译:样品加热单元的高温X射线衍射研究

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摘要

By means of the in situ high temperature X-ray diffraction (HT-XRD).sample heating units (Pt) is studied as the standard sample for temperature correction in the temperature range 28-1050 according to method provided by Rigaku and method of copper target Kα radiation) Kα1, Kα2).By linear fitting, polynomial fitting and custom function fitting, the lattice parameters at each temperature point are also calculated and compared. Besides, different views are put forward for three aspects about the temperature correction in Rigaku diffractometer manual, and the complex phenomenon of the experiment are preliminarily discussed using the theoretical calculation and experimental diffraction data. Theory and experiment show that Custom fitting has higher accuracy. Selection of the degree of the Fitting polynomial must be greater than or equal to 3, the lattice constant of Platinum nonlinear increases with temperature.In the process of heating.Pt and environmental elements may be coupled reaction, platinum is oxidized to form a new oxide Pt3O2.
机译:通过原位高温X射线衍射(HT-XRD),根据理学提供的方法和铜的方法,研究了样品加热单元(Pt)作为温度范围为28-1050的温度校正的标准样品目标Kα辐射)Kα1,Kα2)。通过线性拟合,多项式拟合和自定义函数拟合,还计算并比较了每个温度点的晶格参数。此外,在《 Rigaku衍射仪手册》中就温度校正的三个方面提出了不同的看法,并使用理论计算和实验衍射数据初步讨论了该实验的复杂现象。理论和实验表明,定制拟合具有较高的精度。拟合多项式的选择必须大于或等于3,铂的非线性晶格常数随温度而增加。在加热过程中,Pt和环境元素可能发生偶联反应,铂被氧化形成新的氧化物三氧化二铂

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