首页> 外文期刊>Journal of Reinforced Plastics and Composites >Effects of framework structure and coupling modification on the properties of mesoporous silica/poly(methyl methacrylate) composites
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Effects of framework structure and coupling modification on the properties of mesoporous silica/poly(methyl methacrylate) composites

机译:骨架结构和偶联改性对介孔二氧化硅/聚甲基丙烯酸甲酯复合材料性能的影响

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摘要

Mesoporous silicas (MPSs) with two-dimensional (2D) hexagonal framework (SBA-15) and worm-hole framework (MSU-J) were synthesized with poly(ethylene oxide-b-propylene oxide-b-ethylene oxide) (P123) and ,-polyoxypropylene diamine (D2000) as templates, respectively. Both SBA-15 and MSU-J were further modified with -(methacryloyloxy) propyl trimethoxy silane (MAPTS) via post-grafting to prepare organic mesoporous silicas (denoted SBA-15-G and MSU-J-G, respectively) with -C=C groups on the surface of mesopores. All mesoporous silicas were employed as filler to prepare improved poly(methyl methacrylate) (PMMA) composites with lower dielectric constant, higher thermal, and mechanical properties. It was found that all mesoporous silicas retained their mesostructure in MPS/PMMA composites to introduce a lot of voids into the composites. So, the dielectric constant of composites decreased with the loading of mesoporous silica and their organic derivatives increased. Also, all composites exhibited stabilized dielectric constant with lower value in comparison to pure PMMA over the whole frequency from 1 to 160MHz. Specifically, with the addition of MPS to PMMA, the dielectric constants of the composite can be reduced from 2.91 of the pure PMMA to 2.73 and 2.64 by incorporating 4wt% SBA-15 and 7wt% MSU-J, respectively. All the composites exhibited improved mechanical properties, glass transmission temperature (T-g), and thermal stability in comparison to PMMA. All these differences in macro-properties are attributed to the different structure between MPS/PMMA composites and PMMA. MSU-J silica with the larger framework pore size provides the composite with the best improvement in dielectric, thermal, and mechanical properties.
机译:使用聚(环氧乙烷-b-环氧丙烷-b-环氧乙烷)(P123)合成了具有二维(2D)六边形骨架(SBA-15)和蠕虫孔骨架(MSU-J)的介孔二氧化硅(MPS)和分别作为模板的,-聚氧丙烯二胺(D2000)。 SBA-15和MSU-J都通过后接枝进一步用-(甲基丙烯酰氧基)丙基三甲氧基硅烷(MAPTS)改性,以制备有机介孔二氧化硅(分别表示为SBA-15-G和MSU-JG),其中-C = C介孔表面上的基团。所有的介孔二氧化硅均被用作填料,以制备介电常数较低,热和机械性能较高的改进的聚甲基丙烯酸甲酯(PMMA)复合材料。发现所有介孔二氧化硅在MPS / PMMA复合材料中保持其介孔结构,从而在复合材料中引入大量空隙。因此,复合材料的介电常数随介孔二氧化硅的负载而降低,并且其有机衍生物也随之增加。同样,在从1到160MHz的整个频率范围内,所有复合材料均具有稳定的介电常数,与纯PMMA相比具有更低的值。具体地,通过将​​MPS添加到PMMA中,通过分别引入4wt%的SBA-15和7wt%的MSU-J,可以将复合物的介电常数从纯PMMA的2.91降低到2.73和2.64。与PMMA相比,所有复合材料均具有改善的机械性能,玻璃透过温度(T-g)和热稳定性。宏观性能的所有这些差异归因于MPS / PMMA复合材料与PMMA之间的结构不同。具有较大骨架孔尺寸的MSU-J二氧化硅为复合材料提供了最佳的介电,热和机械性能改进。

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