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首页> 外文期刊>Microporous and mesoporous materials: The offical journal of the International Zeolite Association >The impact of the functionalization of silica mesopores on the structural and biological features of SBA-15
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The impact of the functionalization of silica mesopores on the structural and biological features of SBA-15

机译:二氧化硅中孔官能化对SBA-15结构和生物学特征的影响

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摘要

Hydrophobic and hydrophilic silver-functionalized SBA-15 silica nanocomposites were prepared via direct synthesis using the so-called BOTTOM-UP approach to nanotechnology. This process enables silica-based nanocomposites with a controlled metal content to be fabricated. XRD, XPS, Raman, SEM-EDX and TEM methods were used to describe the physicochemical properties of these systems. The surface atomic content of silver (XPS) was estimated at approximately 0.03 at.% and 0.04 at.% compared to the bulk signal (SEM-EDX), which was determined to be about 0.33 at.% and 0.48 at.%, respectively for the non-silylated and silylated systems. The XPS studies that were carried out for these two structures revealed the presence of elemental and/or oxidized silver on the surfaces. However, in the more volumetric XRD studies, there was no clear signal that corresponded to this metal, which suggests the presence of an ionic form of silver. Calcination was used to obtain the silver-decorated porous silica ceramic composites, for which the calcination temperature was determined from TGA/DTG studies. The calcination resulted in the compensation of the surface and bulk atomic content of silver at approximately 0.1 at.% (on both the surface and the bulk). The wettability measurements classified silylated specimens as well as silylated and calcined systems as being hydrophilic and hydrophobic, respectively. Low-angle diffraction confirmed the mesoporous character of the silica with hexagonal pore channels regardless of the degree of functionalization or calcination. The Raman data illustrated the impact of the silver on the propyl-carbonate chains and silica structure. Finally, the most vigorous bactericidal activity was found against Staphylococcus aureus and Escherichia coli for a hydrophilic system with a low silver content and a calcined sample with a slightly higher silver concentration.
机译:通过使用所谓的自下而上的纳米技术直接合成制备疏水性和亲水性银官能化SBA-15二氧化硅纳米复合材料。该方法使基于二氧化硅的纳米复合材料具有待制造的受控金属含量。 XRD,XPS,拉曼,SEM EDX和TEM方法用于描述这些系统的物理化学性质。银(XPS)的表面原子含量估计为约0.03.%和0.04.%与本体信号(SEM-EDX)相比,该百分比分别测定为约0.33.%和0.48。%对于非甲硅烷基化和甲硅烷基化的系统。对这两个结构进行的XPS研究显示出在表面上存在元素和/或氧化银。然而,在越多的XRD研究中,没有与该金属相对应的明确信号,这表明存在离子形式的银。煅烧用于获得银色装饰多孔二氧化硅陶瓷复合材料,其从TGA / DTG研究中测定煅烧温度。煅烧导致表面和大量原子含量的银在约0.1at。%(在表面和散装中)。润湿性测量分别分类为甲硅烷基化标本以及甲硅烷基化和煅烧系统,分别是亲水和疏水的。低角度衍射无论官能化或煅烧程度如何,用六边形孔通道证实了二氧化硅的介孔特征。拉曼数据说明了银对丙基碳酸酯链和二氧化硅结构的影响。最后,对具有低银含量的亲水性系统和煅烧样品具有略高的银浓度,对葡萄球菌和大肠杆菌进行了最剧烈的杀菌活性。

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