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Hydroxyl-Group Identification Using O K-Edge XAFS in Porous Glass Fabricated by Hydrothermal Reaction and Low-Temperature Foaming

机译:O K边缘XAFS在水热反应和低温发泡制备的多孔玻璃中的羟基识别

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摘要

Porous glass was prepared by the hydrothermal reaction of sodium borosilicate glass, and oxygen-ion characterization was used to identify the hydroxyl groups in its surface area. A substantial amount of “water” was introduced into the ionic structure as either OH groups or H O molecules through the hydrothermal reaction. When the hydrothermally treated glass was reheated at normal pressures, a porous structure was formed due to the low-temperature foaming resulting from the evaporation of H O molecules and softening of the glass. Although it was expected that the OH groups would remain in the porous glass, their distribution required clarification. Oxygen K-edge X-ray absorption fine structure (XAFS) spectroscopy enables the bonding states of oxygen ions in the surface area and interior to be characterized using the electron yield (EY) and fluorescence yield (FY) mode, respectively. The presence of OH groups was detected in the O K-edge XAFS spectrum of the porous glass prepared by hydrothermal reaction with a corresponding pre-edge peak energy of 533.1 eV. In addition, comparison of the XAFS spectra obtained in the EY and FY modes revealed that the OH groups were mainly distributed in the surface area (depths of several tens of nanometers).
机译:通过硼硅酸钠玻璃的水热反应制备多孔玻璃,并通过氧离子表征鉴定其表面积中的羟基。通过水热反应,大量的“水”作为OH基团或HO分子被引入到离子结构中。当将水热处理的玻璃在常压下再加热时,由于H O分子的蒸发和玻璃的软化而导致的低温发泡,形成了多孔结构。尽管预期OH基团将保留在多孔玻璃中,但是它们的分布需要澄清。氧K边缘X射线吸收精细结构(XAFS)光谱能够分别使用电子产率(EY)和荧光产率(FY)模式表征表面积和内部的氧离子键合状态。在通过水热反应制备的多孔玻璃的O K边缘XAFS光谱中检测到OH基的存在,相应的前边缘峰能量为533.1 eV。此外,通过EY和FY模式获得的XAFS光谱的比较表明,OH基团主要分布在表面积(数十纳米的深度)中。

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