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The potential of magnetic heating for fabricating Pickering-emulsion-based capsules

机译:用于制造基于皮克林乳液的胶囊的磁热量的潜力

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摘要

Pickering emulsions (particle-stabilized emulsions) have been widely explored due to their potential applications, one of which is using them as precursors for the formation of colloidal capsules that could be utilized in, among others, the pharmacy and food industries. Here, we present a novel approach to fabricating such colloidal capsules by using heating in the alternating magnetic field. When exposed to the alternating magnetic field, magnetic particles, owing to the hysteresis and/or relaxation losses, become sources of nano- and micro-heating that can significantly increase the temperature of the colloidal system. This temperature rise was evaluated in oil-in-oil Pickering emulsions stabilized by both magnetite and polystyrene particles. When a sample reached high enough temperature, particle fusion caused by glass transition of polystyrene was observed on surfaces of colloidal droplets. Oil droplets covered with shells of fused polystyrene particles were proved to be less susceptible to external stress, which can be evidence of the successful formation of capsules from Pickering emulsion droplets as templates.
机译:由于其潜在的应用,皮克林乳液(颗粒稳定的乳液)已被广泛探索,其中一种是使用它们作为形成胶体胶囊的前体,这些胶囊在药房和食品工业中等。这里,我们通过在交替磁场中使用加热来提出一种制造这种胶体胶囊的新方法。当暴露于交替磁场时,由于滞后和/或弛豫损失,磁性颗粒成为纳米和微加热的来源,可以显着增加胶体系统的温度。通过磁铁矿和聚苯乙烯颗粒稳定的油内油漆乳液中评价该温度升高。当样品达到足够高的温度时,在胶体液滴的表面上观察到由聚苯乙烯的玻璃化转变引起的颗粒融合。被证明,用熔融聚苯乙烯颗粒壳覆盖的油滴不易受到外部压力的影响,这可以是从皮克林乳液液滴成功形成胶囊的证据。

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