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Ga-SBA-3 A novel nanostructured material: synthesis, characterization and application

机译:GA-SBA-3一种新型纳米结构材料:合成,表征和应用

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This paper reports for the first time the incorporation of gallium into the structure of the mesoporous SBA-3 material in order to modify the intrinsic acidity of the material. The study indicates the effective incorporation of Ga into a network in tetrahedral form, with most in the interior of the lodging and a low proportion on the external surface. Gallium was introduced via post-synthesis using Ga-nitrate in appropriate conditions. The nanostructured material was characterized by ICP, x-ray diffraction, nuclear magnetic resonance-MAS, x-ray photoelectron spectra, FTIR, SEM, transmission electron microscopy and UV-vis. Pyridine was used as a probe molecule for the determination of its acidity following the amount and type of acidic sites by FTIR. In addition, aniline adsorption/desorption studies and subsequent in situ polymerization, polyaniline (PANI)/Ga-SBA-3, were carried out with the aim of producing a nanocomposite with conductive properties. The original material had good structural regularity and acidity of Bronsted and Lewis; the PANI/Ga-SBA-3 composite also showed a conductivity of 2.5 x 10(-3) S cm(-1), higher than that of its homologs Al-SBA-3 and Al-MCM-41.
机译:本文报道首次将镓掺入介孔SBA-3材料的结构中,以改变材料的内在酸度。该研究表明,在四面体形式中有效地将Ga进入网络中的网络中,大多数在所述住宿的内部和外表面上的低比例。在适当的条件下使用Ga-硝酸盐通过合成后引入镓。纳米结构材料的特征在于ICP,X射线衍射,核磁共振 - MAS,X射线光电子体光谱,FTIR,SEM,透射电子显微镜和UV-Vis。吡啶用作探针分子,用于通过FTIR的酸性位点的量和类型测定其酸度。此外,通过用导电性能产生纳米复合材料的目的进行苯胺吸附/解吸研究和原位聚合,聚苯胺(PANI)/ GA-SBA-3的目的。原材料具有良好的结构规律性和抗骨架的酸度和lewis; PANI / GA-SBA-3复合材料还显示出2.5×10(-3)厘米(-1)的电导率,高于其同源物Al-SBA-3和Al-MCM-41的电导率。

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