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Vibrational Spectral Analysis of Natisite (Na2TiSiO5) and its Structure Evolution in Water and Sulfuric Acid Solutions

机译:基于耐水和硫酸溶液的振动光谱分析及其结构演化

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摘要

Natisite (Na2TiSiO5) is a layered sodium titanosilicate containing TiO5 square pyramids. The structure evolution of natisite in water and acid solutions is the basis for its potential applications. With Na2SiO3 as the silicon source, natisite with the shape of the square sheet was selectively prepared from the hydrothermal method with 14.3 mol/L NaOH solution at 240 °C. Natisite has 20 Raman active modes and 22 infrared active modes from the first-principles calculations within density functional theory, and the calculated Raman and infrared spectra agree well with the experimental ones. The characteristic Raman peak at 844 cm−1 is caused by the symmetric stretching of the apical Ti–O bond in the TiO5 unit, assigning to A1g and B2g modes. Natisite remains relatively stable in water with a sodium leaching percentage of lower than 6%. When washing with sulfuric acid solutions, the interlayer spacing of natisite is reduced due to the extensive removal of sodium ions, and an intermediate composed of SiO4 and newly formed TiO6 units may be formed. Moreover, after washing with water and acid solutions, 95.5%, 63.4%, and 35.2% of Na, Si, and Ti in natisite can be leached in total, respectively, resulting in the structural disintegration of natisite.
机译:Natisite(Na2TisiO5)是含有TiO5方形金字塔的层状钛硅酸钠。在水和酸溶液中的间型结构的结构演变是其潜在应用的基础。用Na2SiO3作为硅源,用14.3mol / L NaOH溶液在240℃下选择性地制备具有方形片材的形状的基塔钛矿。 NatiTite有20种拉曼有源模式和来自密度函数理论的第一原理计算的22种红外主动模式,计算的拉曼和红外光谱与实验性吻合良好。 844cm-1处的特性拉曼峰是由TiO5单元中的顶端Ti-O键的对称拉伸引起的,分配给A1G和B2G模式。在水中含有浸出率低于6%的水仍然稳定。用硫酸溶液洗涤时,由于钠离子的广泛除去,因此纳米钛矿的层间距减少,并且可以形成由SiO 4和新形成的TiO6单元组成的中间体。此外,在用水和酸溶液洗涤后,可以分别浸出95.5%,63.4%和35.2%的Na,Si和Ti,总共可以浸出,导致纳塔钛矿的结构崩解。

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