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Microencapsulation of phosphor particles with the drying-in-liquid method in parallel with the suspension polymerization method and effect on afterglow luminance property

机译:与悬浮聚合方法平行的磷光体颗粒与干液颗粒的微胶囊,与悬浮聚合方法的影响

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摘要

Strontium aluminate particles as phosphor particles were microencapsulated with the drying-in-liquid method in parallel with the suspension polymerization method in order to increase the waterproof and to improve afterglow luminance property. In this study, ethylene glycol was used as the continuous phase instead of water to prevent phosphor particles from deteriorating at the microencapsulation process, and polystyrene was used as the more hydrophobic microcapsule shell. Styrene monomer was used as the solvent of polystyrene at the drying-in-liquid method and as the polymerizable monomer at the suspension polymerization method at the same time. The content and the waterproof could be considerably increased with the drying-in-liquid method in parallel with the suspension polymerization method as compared with only the drying-in-liquid method, because the denser microcapsule shell without any tiny holes and cracks could be formed. The decrease due to water in brightness of afterglow luminance of phosphor particles could be prevented by microencapsulating with the drying-in-liquid method in parallel with suspension polymerization method. Copyright (c) 2017 John Wiley & Sons, Ltd.
机译:作为磷光体颗粒的锶铝酸盐颗粒与悬浮聚合方法平行的干燥液体法微胶囊,以增加防水和改善余辉亮度性质。在该研究中,使用乙二醇作为连续相来代替水以防止磷光体颗粒在微胶囊化过程中劣化,并且使用聚苯乙烯作为更疏水的微胶囊壳。苯乙烯单体用作干液中的聚苯乙烯的溶剂,同时悬浮聚合方法的可聚合单体。与悬浮聚合方法相比,含量和防水可以随着悬浮聚合方法与悬浮液法相比,与干燥的液体法相比,由于没有任何微小孔和裂缝的更密集微胶囊壳体。通过用悬浮聚合方法与干燥液相含有干液法微胶囊,可以防止由于磷光体颗粒的荧光亮度亮度亮度的亮度降低。版权所有(c)2017 John Wiley&Sons,Ltd。

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