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Template sol-gel synthesis for fabrication of mesoporous silica/alumina hybrid membrane nanocomposites

机译:用于制备介孔二氧化硅/氧化铝杂化膜纳米复合材料的模板溶胶-凝胶合成

摘要

Mesoporous silica with high surface area and uniform channel distribution has been developed via liquid crystal templating materials such as amphiphilic triphenylene derivatives capable of having anisotropic and spontaneous alignment. However, amphiphilic triphenylene was only reported as a template to synthesize mesoporous silica nanocomposite with parallel structure to the substrate. Therefore, by introducing a one-dimensional (1D) template-limiting material such as porous alumina membrane, it was expected that the resulting hybrid membrane would give vertically alignment of self-assembled organic compounds to give high performance of nanocomposites for potential application in energy devices. Herein we report that mesoporous silica/alumina hybrid membrane with interpore distance of 2.5 nm was successfully fabricated by an amphiphilic triphenylene (TPC10TEG) as a template in sol-gel synthesis of mesoporous silica (TPC10TEG/silicahex) in the anodized alumina membrane (AAO). TPC10TEG/silicahex showed an anisotropic - based on presence of absorption peak at 264 nm. In addition, the hexagonal arrangement of TPC10TEG/silicahex was proved based on their transmission electron microscope (TEM) images and diffraction peaks of d100 and d200 at 2 = 2.52° and 5.04°, respectively. For fabrication of mesoporous silica/alumina hybrid membrane, simple approach of using vacuum or gravitational filtration was used for immobilization of TPC10TEG/silicahex to AAO membrane. X-ray diffraction (XRD) analysis on the resulting hybrid nanocomposite showed that the diffraction peaks of d100 and d200 of TPC10TEG/silicahex were still preserved, indicating that the hexagonal arrangements of mesoporous silica were maintained even after the fabrication. Likewise, the morphology study of the resulting hybrid membrane using TEM, scanning electron microscope (SEM), and field emission scanning electron microscope (FESEM) will be carried out and the results will be discussed later.
机译:通过液晶模板材料,例如能够具有各向异性和自发取向的两亲性三亚苯基衍生物,已经开发出具有高表面积和均匀通道分布的中孔二氧化硅。然而,仅报道两亲性三亚苯基作为模板来合成具有与底物平行结构的介孔二氧化硅纳米复合材料。因此,通过引入一维(1D)模板限制材料(例如多孔氧化铝膜),可以预期所得的杂化膜将使自组装有机化合物垂直排列,从而提供高性能的纳米复合材料,可应用于能源领域设备。本文中,我们报道了以两亲性三苯撑(TPC10TEG)为模板,在阳极氧化铝膜(AAO)溶胶-凝胶合成介孔二氧化硅(TPC10TEG / silicahex)中成功地制备了孔距为2.5 nm的介孔二氧化硅/氧化铝杂化膜。 。 TPC10TEG / silicahex显示出各向异性-基于264 nm处的吸收峰。此外,基于它们的透射电子显微镜(TEM)图像和d100和d200在2 = 2.52°和5.04°的衍射峰,证明了TPC10TEG / silicahex的六边形排列。对于介孔二氧化硅/氧化铝混合膜的制造,使用真空或重力过滤的简单方法用于将TPC10TEG / silicahex固定到AAO膜上。对所得杂化纳米复合材料的X射线衍射(XRD)分析表明,TPC10TEG / silicahex的d100和d200的衍射峰仍然保留,表明即使在制造后,介孔二氧化硅也保持了六边形排列。同样,将使用TEM,扫描电子显微镜(SEM)和场发射扫描电子显微镜(FESEM)对所得杂化膜进行形态研究,并将在以后讨论结果。

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