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Mesostructured silica for the reinforcement and toughening of rubbery and glassy epoxy polymers

机译:介孔结构二氧化硅,用于增强和增韧橡胶和玻璃态环氧聚合物

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摘要

Mesoporous forms of silica with wormhole framework structures prepared from tetraethylorthosilicate (denoted MSU-J-TEOS) or from sodium silicate (denoted MSU-J-SS) and an amine surfactant as the structure-directing porogen are highly effective reinforcing and toughening agents for rubbery and glassy epoxy polymers. The improvements in tensile strength and modulus provided by MSU-J silicas with a large average framework pore size (e.g., 5.9 and 21.3 nm) are superior to those provided by the corresponding silicas made from the same TEOS or SS precursors but with smaller framework pore sizes (e.g., 4.2 and 5.2 nm). The improved performance of the larger pore structures is realized even though the surface areas (similar to 670 m(2)/g) are substantially lower than the surface areas of the smaller pore analogs (812-1025 m(2)/g), most likely, because of more efficient polymer impregnation of the particle mesopores. In comparison to the MSU-J-TEOS silica assembled from TEOS, MSU-J-SS silica made from SS exhibits a more uniform pore distribution and smaller particles. These latter textural features lead to improved tensile strength and modulus without compromising the strain-at-break for both rubbery and glassy epoxy polymers. The exceptional strength and toughness provided by MSU-J-SS silica in comparison to MSU-J-TEOS silica are correlated with the high degree of dispersion of the mesophase particles in the epoxy matrix for the more effective distribution of stress and the deflection of microcracks.
机译:由原硅酸四乙酯(表示为MSU-J-TEOS)或硅酸钠(表示为MSU-J-SS)和胺表面活性剂作为结构导向成孔剂制备的具有虫孔骨架结构的介孔形式二氧化硅是高效的橡胶状增强剂和增韧剂和玻璃状环氧聚合物。具有大的平均骨架孔尺寸(例如5.9和21.3 nm)的MSU-J二氧化硅所提供的拉伸强度和模量的改进优于由相同的TEOS或SS前体制成但具有较小的骨架孔的相应二氧化硅所提供的那些尺寸(例如4.2和5.2 nm)。即使表面积(类似于670 m(2)/ g)显着低于较小孔隙类似物的表面积(812-1025 m(2)/ g),也可以实现较大孔隙结构的改进性能,最有可能的原因是,聚合物对颗粒中孔的浸渍更有效。与由TEOS组装的MSU-J-TEOS二氧化硅相比,由SS制成的MSU-J-SS二氧化硅具有更均匀的孔分布和更小的颗粒。后面的这些质地特征导致改进的抗张强度和模量,而不损害橡胶状和玻璃状环氧聚合物的断裂应变。与MSU-J-TEOS二氧化硅相比,MSU-J-SS二氧化硅具有出色的强度和韧性,这与中间相颗粒在环氧树脂基质中的高度分散有关,从而可以更有效地分散应力和微裂纹的变形。

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