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Synthesis of a paraffin phase change material microencapsulated in a siloxane polymer

机译:微囊化硅氧烷聚合物中的石蜡相变材料的合成

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摘要

The coemulsification method suitable for the formulation of microcapsules of n-eicosane coated with a polysiloxane is developed. This method allows to synthesize core–shell microcapsules of paraffin which have the shape of spheres or distorted spheres and are designed for the use as phase change materials. The microcapsules are formed in aqueous phase by the precipitation of n-eicosane together with modified polyhydromethylsiloxane from a common solvent which is miscible with aqueous media. The polysiloxane is modified by the attachment of silylvinyl and alkoxy functions before coemulsification with the paraffin. It also contains the Pt(0) Karstedt catalyst. The microcapsules formed by coemulsification are stabilized by the in situ cross-linking of the polysiloxane shell. The shell is additionally modified by the in situ generation of silanol groups which provide colloidal stabilization of microspheres in aqueous phase. Microcapsules were studied by DSC, SEM, optical polarized microscope, and by thermooptical analysis (TOA).
机译:开发了适用于配制成聚硅氧烷的正二十烷烷微胶囊制剂的共乳化方法。这种方法可以合成具有球形或扭曲球形形状的石蜡核壳微胶囊,并设计用作相变材料。通过从可与水介质混溶的普通溶剂中沉淀正二十烷和改性聚氢甲基硅氧烷,在水相中形成微胶囊。在与石蜡共乳化之前,通过连接甲硅烷基乙烯基和烷氧基官能团对聚硅氧烷进行改性。它还包含Pt(0)Karstedt催化剂。通过共乳化形成的微囊通过聚硅氧烷壳的原位交联而稳定。另外通过原位产生硅烷醇基团来修饰该壳,所述硅烷醇基团在水相中提供微球的胶体稳定。通过DSC,SEM,光学偏光显微镜和热光分析(TOA)研究微胶囊。

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