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Preparation and Characterization of Titania Microspheres and Their Application in a Liquid Chromatography Stationary Phase

机译:二氧化钛微球的制备,表征及其在液相色谱固定相中的应用

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Titania microspheres were synthesized using hydrothermal methods to exploit a new liquid chromatography stationary phase. The prepared titania microspheres were approximately 7 μm in diameter, and the particle size distribution was relatively narrow and uniform. Furthermore, the average specific surface area was 276.0 m2·g·1, the average pore volume was approximately 0.25 mL·g·1, and the pore diameter was approximately 35.9 nm for sintering titania microspheres. These parameters indicate that the titania microspheres prepared for this study have excellent surface properties for chromatography. Additionally, columns filled with the titania microspheres were able to separate basic compounds, including benzene, nitrobenzene and o-nitroanisole. It could be proposed that the titania microspheres prepared for this study would be a promising stationary phase for liquid chromatography.
机译:利用水热法合成了二氧化钛微球,以开发新的液相色谱固定相。制备的二氧化钛微球的直径约为7μm,并且粒度分布相对窄且均匀。此外,对于烧结二氧化钛微球,平均比表面积为276.0m2·g·1,平均孔体积为约0.25mL·g·1,且孔径为约35.9nm。这些参数表明,本研究制备的二氧化钛微球具有出色的色谱表面特性。此外,装有二氧化钛微球的色谱柱能够分离碱性化合物,包括苯,硝基苯和邻硝基苯甲醚。可以建议,为这项研究准备的二氧化钛微球将是液相色谱的有希望的固定相。

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