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

Jienan Zhang, Xiaoshu Zhu, Yinping Zhang
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引用次数: 1

Abstract

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.
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
采用水热法合成了二氧化钛微球,开发了一种新的液相色谱固定相。制备的二氧化钛微球直径约为7 μm,粒径分布较窄且均匀。烧结所得二氧化钛微球的平均比表面积为276.0 m2·g·1,平均孔体积约为0.25 mL·g·1,孔径约为35.9 nm。这些参数表明本研究制备的二氧化钛微球具有良好的表面性能。此外,填充二氧化钛微球的柱能够分离碱性化合物,包括苯、硝基苯和邻硝基苯甲醚。本研究制备的二氧化钛微球是一种很有前途的液相色谱固定相。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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