首页> 外文期刊>Journal of Ceramic Processing Research. (Text in English) >Electro-chemical preparation of TiO2/ACF composites with TNB electrolyte and their photocatalytic effect
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Electro-chemical preparation of TiO2/ACF composites with TNB electrolyte and their photocatalytic effect

机译:TNB电解质的TiO2 / ACF复合材料的电化学制备及其光催化作用

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In this study,we have investigated a method for the electro-chemical preparation of TiO2/ACF composites involving the electro-plating of Ti in titanium n-butoxide(TNB)electrolyte into an activated carbon fiber matrix.The surface textural properties showed that the BET surface area and the total pore volume decrease as the distribution of TiO2 on the activated carbon fiber surfaces with electro-chemical operating time.The changes in XRD patterns showed typical anatase type on the TiO2/ACF composite prepared with activated carbon fiber matrix by the electro-plating method in the TNB solution.In SEM micrographs,the titanium complex particles are uniformly distributed on and the around the fibers.And some large clusters were found when the electro-chemical operating time increases.The results of chemical elemental analysis for the TiO2/ACF composites showed that most of the spectra for these samples gave stronger peaks for carbon and Ti metal than that of any other elements.From the results of thermal analysis,it could be considered that the amounts of the TiO2 components in the composite increase with an increase of the electro-chemical operating time.Finally,the prominent photocatalytic activity of the TiO2/ACF composites between c/c_o and time could be attributed to both the effects of catalytic decomposition and adsorptivity between the supported TiO2 and the porous fiber matrixes.
机译:在这项研究中,我们研究了一种电化学制备TiO2 / ACF复合材料的方法,该方法包括将正丁醇钛(TNB)电解质中的Ti电镀到活性碳纤维基质中。随着电化学操作时间的延长,BET表面积和总孔体积随TiO2在活性炭纤维表面上的分布而减小。XRD图谱的变化显示了活性炭纤维制备的TiO2 / ACF复合材料的典型锐钛型。在SEM显微照片中,钛络合物颗粒均匀地分布在纤维上及其周围,并且随着电化学操作时间的增加,发现了一些大的团簇。 TiO2 / ACF复合材料表明,这些样品的大多数光谱都比其他元素具有更强的碳和钛金属峰。从热分析的角度来看,可以认为复合材料中TiO2的含量随着电化学操作时间的增加而增加。最后,TiO2 / ACF复合材料在c / c_o和时间之间的显着光催化活性这归因于负载的TiO2和多孔纤维基体之间催化分解的影响和吸附性。

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