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Study of monolayer dispersion of MoO3 on muscovite powder and diffusing behavior of MoO3 on muscovite wafer by SR-TXRF

机译:SR-TXRF研究MoO3在白云母粉上的单层分散及MoO3在白云母片上的扩散行为

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The dispersion capacity of MoO3 on the surface of muscovite powder was studied by X-ray photoelectron spectroscopy (XPS) and X-ray diffraction (XRD) techniques. The results indicated that MoO3 can disperse onto the surface of a support as a sub-monolayer. The dispersion capacity was 5.88 mg MoO3 (g muscovite)(-1), or 3.24 Mo atoms nm(-2). The diffusing process of MoO3 on muscovite wafer was investigated by means of Synchrotron Radiation excited Total-reflection X-Ray Fluorescence spectroscopy (SR-TXRF). A stripe of MoO3 on the muscovite wafer was used as the diffusion source. After thermal treatment in air or dry N-2, MoO3 diffuses onto the surface of muscovite and forms a sub-monolayer. Sublimation of MoO3 was also detected during the diffusion process. The diffusion rate in two heating atmospheres differed significantly. The diffusion rate of MoO3 on muscovite in dry N-2 was greater than that in air. A possible explanation of the phenomena is that surface diffusion onto the muscovite surface plays a more important role in the process than transportation via gas phase during the diffusion of MoO3. [References: 18]
机译:利用X射线光电子能谱(XPS)和X射线衍射(XRD)技术研究了MoO3在白云母粉表面的分散能力。结果表明,MoO3可以作为亚单层分散在载体的表面上。分散能力为5.88 mg MoO3(g白云母)(-1)或3.24 Mo原子nm(-2)。利用同步辐射激发全反射X射线荧光光谱(SR-TXRF)研究了MoO3在白云母晶片上的扩散过程。白云母晶片上的MoO3条纹用作扩散源。在空气或干燥的N-2中进行热处理后,MoO3扩散到白云母的表面并形成亚单层。在扩散过程中还检测到MoO3的升华。在两种加热气氛中的扩散速率差异很大。 MoO3在干燥的N-2中在白云母上的扩散速率大于在空气中的扩散速率。这种现象的可能解释是,在MoO3扩散过程中,表面扩散到白云母表面的过程比在气相中迁移更重要。 [参考:18]

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