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Thermal stability of composite phase change material microcapsules incorporated with silver nano-particles

机译:含银纳米粒子的复合相变材料微胶囊的热稳定性

摘要

This paper reports a study on the thermal stability of phase change material microcapsules that are incorporated with silver nano-particles (Ag-NPs). The novel microcapsules were fabricated by the technique of in situ polymerization, with aminoplast as the wall and phase change material bromo-hexadecane (PCM BrC16) as the core. Thermal gravimetry (TG) analysis was applied to measure the thermal stability of these microcapsules and surface morphology of the microcapsules was observed by means of scanning electron microscopy (SEM) after an application of curing treatment at 130 ?XC. Comparing with conventional phase change material microcapsules (PCMMs), nano-composite phase change material microcapsules (NCPCMMs) have higher thermal stability. This can be attributed to nano-composite structure of the microcapsules, in which metal Ag-NPs distributed on the surface to increase wall toughness and strength. The possible reinforcement mechanisms of the nano-composite structure are explored.
机译:本文报道了与银纳米颗粒(Ag-NPs)结合的相变材料微胶囊的热稳定性的研究。新型微胶囊是通过原位聚合技术制备的,以氨基塑料为壁,相变材料为溴十六烷(PCM BrC16)为核心。应用热重分析(TG)分析以测量这些微囊的热稳定性,并在130℃下进行固化处理后,通过扫描电子显微镜(SEM)观察微囊的表面形态。与常规相变材料微胶囊(PCMM)相比,纳米复合相变材料微胶囊(NCPCMM)具有更高的热稳定性。这可以归因于微胶囊的纳米复合结构,其中金属Ag-NPs分布在表面上以增加壁的韧性和强度。探索了纳米复合结构可能的增强机理。

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