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Infrared spectroscopic study of water in mesoporous silica under supercritical conditions

机译:超临界条件下中孔二氧化硅中水的红外光谱研究

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摘要

The structure of water under high temperature- pressure conditions in mesospace was investigated by measuring the infrared spectra of water in mesoporous silica. Absorption peaks attributed to OH-stretching vibration of water in mesoporous silica were detected at lower wavenumbers as compared with bulk water, and the absorption peak positions were dependent on pore diameter. For small pore diameters (3-20 nm), absorption peak positions of water were detected at lower wavenumbers (ca. 3,300 cm _(-1)) at 400 °C, while for larger pore diameters (30-50 nm) the peaks were detected at higher wavenumbers (ca. 3,500 cm _(-1)). We attribute these features to the effects of mesoporous silica surface structure on the structural and vibrational modes of water. Furthermore, absorption peak positions changed significantly at different pore sizes (20 and 30 nm), indicating that the structure of water in small pores approaches a more ice-like structure. Based on our experimental results, the structured water layer in mesoporous silica is estimated to be at least 10 nm thick, which is thicker than that previously documented in molecular dynamic simulation studies where the thickness of structured water was found to be two or three layers from the surface.
机译:通过测量介孔二氧化硅中水的红外光谱,研究了介孔空间中高温高压条件下水的结构。与大量水相比,在较低的波数下检测到了中孔二氧化硅中水的OH拉伸振动引起的吸收峰,并且吸收峰的位置取决于孔径。对于较小的孔径(3-20 nm),在400°C时在较低波数(约3,300 cm _(-1))处检测到水的吸收峰位置,而对于较大孔径(30-50 nm),则检测到峰在更高的波数下(约3500 cm _(-1))被探测到。我们将这些特征归因于介孔二氧化硅表面结构对水的结构和振动模式的影响。此外,在不同的孔径(20和30 nm)下,吸收峰的位置发生了显着变化,表明小孔中水的结构趋于更像冰的结构。根据我们的实验结果,介孔二氧化硅中的结构化水层估计至少厚10 nm,这比以前在分子动力学模拟研究中记录的结构化水层厚2或3层要厚。表面。

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