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首页> 外文期刊>Journal of Colloid and Interface Science >Expanding mesoporosity of triblock-copolymer-templated silica under weak synthesis acidity
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Expanding mesoporosity of triblock-copolymer-templated silica under weak synthesis acidity

机译:弱合成酸条件下三嵌段共聚物模板二氧化硅的介孔膨胀性

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摘要

With initial aging at low temperature for enough time, silicas with large mesoporosity were synthesized using triblock copolymer as template agent under weak acidities. SBA-15 with periodic mesostructure and short mesochannels could be synthesized at pH 2.5-3.0 within weak acidity range, and the surface areas, pore diameters and pore volumes reached up to ca. 1000 m~2/g, 8.8 nm and 2.0 cm~3/g, respectively, which were significantly higher than those of the conventional SBA-15 synthesized under strong acidities. Mesoporous silica with wormhole structure and abundant textural porosity was formed at pH ~ 3.5. The increased hydrophobic volume of the copolymer micelles at elevated pH values was responsible for the enlargement of mesoporosity in the products. The materials synthesized under weak acidities showed lower hexagonal ordering in comparison to the general SBA-15 synthesized under strong acidities because the decreased hydronium ion concentration induced relatively weaker assembly forces during the synthesis. Nonetheless, the short mesochannels and large pore diameter in the products might be beneficial to some applications in which fast diffusion of molecules is required.
机译:在低温下初始老化足够的时间后,以三嵌段共聚物为模板剂在弱酸性条件下合成了介孔率大的二氧化硅。在弱酸性范围内,pH值为2.5〜3.0时,可以合成具有周期性介孔结构和短介孔通道的SBA-15,表面积,孔径和孔体积可达约1。分别在1000 m〜2 / g,8.8 nm和2.0 cm〜3 / g的条件下,明显高于在强酸性条件下合成的常规SBA-15。在pH〜3.5时,形成具有虫孔结构和丰富的结构孔隙的介孔二氧化硅。在升高的pH值下,共聚物胶束的疏水体积增加,是导致产物中孔率增大的原因。与在强酸性下合成的普通SBA-15相比,在弱酸性下合成的材料显示出较低的六角序,这是因为降低的水合氢离子浓度导致了合成过程中相对较弱的组装力。尽管如此,产物中的短介孔通道和大孔径对于需要分子快速扩散的某些应用可能是有益的。

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