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首页> 外文期刊>Langmuir: The ACS Journal of Surfaces and Colloids >High-porosity macroporous polymers sythesized from titania-particle- stabilized medium and high internal phase emulsions
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High-porosity macroporous polymers sythesized from titania-particle- stabilized medium and high internal phase emulsions

机译:由二氧化钛颗粒稳定的中等和高内相乳液合成的高孔隙度大孔聚合物

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摘要

Particle-stabilized high internal phase emulsions have been used to synthesize tough and very high porosity macroporus polymers with a closed-cell pore structure. In this study, we show that Pickering water-in-oil emulsion templates with up to an 85 vol % internal phase can be stabilized by only 1 wt % of titania particles with their surfaces suitably modified, by the adsorption of 3.5 ± 0.5 wt % oleic acid. The pore structure and mechanical properties of the resulting macroporous polymers were tailored by altering the internal phase volume ratio of the emulsion template and the titania particle concentration used to stabilize the emulsion templates. The pore size and pore size distributions increase with increasing internal phase volume of the emulsion template as well as decreasing titania particle concentration used to stabilize the emulsion template. The mechanical properties, namely, Young's modulus and the crush strength of the macroporous polymers, increased with decreasing porosity and increasing foam density. The toughest macroporous polymer had the lowest porosity but also the smallest pore size and narrowest pore size distribution.
机译:颗粒稳定的高内相乳液已用于合成具有闭孔孔隙结构的坚韧且孔隙率很高的大孔聚合物。在这项研究中,我们表明内含物含量最高为85%的Pickering油包水乳液模板只能通过表面改性的二氧化钛颗粒的1 wt%吸附3.5±0.5 wt%来稳定。油酸。通过改变乳液模板的内相体积比和用于稳定乳液模板的二氧化钛颗粒浓度来调整所得大孔聚合物的孔结构和机械性能。孔径和孔径分布随着乳液模板的内相体积的增加以及用于稳定乳液模板的二氧化钛颗粒浓度的降低而增加。机械性能,即杨氏模量和大孔聚合物的抗碎强度,随着孔隙率的降低和泡沫密度的增加而增加。最坚韧的大孔聚合物的孔隙率最低,但孔径最小,孔径分布最窄。

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