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对氨基苯乙酸介导在乙醇溶液中合成单分散二氧化钛杂化微球

p-Aminophenylacetic acid-mediated synthesis of monodispersed titanium oxide hybrid microspheres in ethanol solution.

作者信息

Zhang Hongye, Xie Yun, Liu Zhimin, Tao Ranting, Sun Zhenyu, Ding Kunlun, An Guimin

机构信息

Beijing National Laboratory of Molecular Science, Institute of Chemistry, The Chinese Academy of Sciences, Beijing 100190, China.

出版信息

J Colloid Interface Sci. 2009 Oct 15;338(2):468-73. doi: 10.1016/j.jcis.2009.06.046. Epub 2009 Jun 24.

Abstract

Monodispersed TiO2 hybrid microspheres were prepared via the hydrolysis of titanium isopropoxide (TTIP) in ethanol solution containing p-aminophenylacetic acid (APA). The effects of the APA:TTIP molar ratio, water content, reaction time and reaction temperature on the morphology of the resultant spheres were investigated. The products were characterized by scanning electron microscopy, transmission electron microscopy, Fourier transform infrared spectroscopy, thermogravimetric analysis, and X-ray diffraction. It was demonstrated that the diameters of the resultant TiO2 spheres could be tuned in the range of 380-800 nm by changing the APA:TTIP molar ratio (1:3 to 3:1) and water content (1-3 v/v%) in the reaction medium, and that increasing the APA:TTIP molar ratio led to larger TiO2 hybrid spheres while increasing the water content decreased their size. The loading content of APA in the hybrid spheres could reach 20 wt.% as they were prepared with the APA:TTIP ratio of 3:1. The possible formation mechanism of the hybrid spheres was also investigated. It was found that APA slowed down the hydrolysis rate of the titanium precursor so that resulted in the formation of the TiO2 spheres. In addition, the APA present in TiO2 spheres acted as a reducing agent to in situ convert HAuCl4 into metallic Au on the surface of the TiO2 spheres. The catalytic activity of the resultant Au/APA-TiO2 composite was examined using transfer hydrogenation of phenylacetone with 2-propanol, and it was indicated that the catalyst displayed high efficiency for this reaction.

摘要

通过在含有对氨基苯乙酸(APA)的乙醇溶液中异丙醇钛(TTIP)水解制备了单分散的TiO₂杂化微球。研究了APA与TTIP的摩尔比、水含量、反应时间和反应温度对所得微球形态的影响。通过扫描电子显微镜、透射电子显微镜、傅里叶变换红外光谱、热重分析和X射线衍射对产物进行了表征。结果表明,通过改变反应介质中APA与TTIP的摩尔比(1:3至3:1)和水含量(1 - 3 v/v%),所得TiO₂微球的直径可在380 - 800 nm范围内调节,且增加APA与TTIP的摩尔比会导致TiO₂杂化微球更大,而增加水含量会减小其尺寸。当以3:1的APA与TTIP比例制备时,杂化微球中APA的负载量可达20 wt.%。还研究了杂化微球可能的形成机制。发现APA减缓了钛前驱体的水解速率,从而导致TiO₂微球的形成。此外,TiO₂微球中存在的APA作为还原剂将HAuCl₄原位转化为TiO₂微球表面的金属Au。使用苯丙酮与2 - 丙醇的转移氢化反应考察了所得Au/APA - TiO₂复合材料的催化活性,结果表明该催化剂对该反应具有高效性。

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