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Ordered Cubic Mesoporous Silicas with Large Pore Sizes Synthesized via High-Temperature Route

机译:通过高温途径合成的大孔径有序立方介孔二氧化硅

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摘要

Ordered cubic mesoporous silicas with large pore sizes (LP-SBA-16) have been successfully synthesized at high temperatures (180-220 degrees C) using polymer surfactant of F127 as a template. Compared with conventional SBA-16 with entrance size at 3.6 nm, LP-SBA-16 samples synthesized at high temperatures show large entrance sizes at 11.8-24.7 nm, confirmed by the pore size distribution and TEM images. The formation of these large pore sizes in the samples is attributed to the increase of surfactant hydrophobicity and the merging of mesopores at high temperatures. The results obtained from NMR and XRD techniques show that ordered mesostructure in LP-SBA-16 samples basically remained even if the surfactant (F127) is fully decomposed at high temperatures, indicating that F127 surfactant becomes unimportant when the mesoporous walls of silica have been condensed. Furthermore, we have compared the adsorption capacity myoglobin over conventional SBA-16 and LP-SBA-16 samples, and it is found that LP-SBA-16 samples exhibit much higher adsorption capacity than conventional SBA-16, which is potentially important for immobilization of enzymes on ordered mesoporous materials.
机译:以F127的聚合物表面活性剂为模板,在高温(180-220摄氏度)下成功合成了大孔径有序立方介孔二氧化硅(LP-SBA-16)。与孔径为3.6 nm的常规SBA-16相比,在高温下合成的LP-SBA-16样品在11.8-24.7 nm处显示较大的孔径,这由孔径分布和TEM图像证实。样品中这些大孔径的形成归因于表面活性剂疏水性的增加和高温下中孔的合并。从NMR和XRD技术获得的结果表明,即使表面活性剂(F127)在高温下完全分解,LP-SBA-16样品中的有序介孔结构也基本保留,这表明当二氧化硅的介孔壁冷凝后F127表面活性剂变得不再重要。此外,我们比较了传统SBA-16和LP-SBA-16样品对肌红蛋白的吸附能力,发现LP-SBA-16样品比常规SBA-16的吸附能力高得多,这对于固定化具有重要意义。有序介孔材料上的酶

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