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Synthesis of Nanoencapsulated Phase Change Materials with Ag Shell for Thermal Energy Storage

机译:用银壳合成纳米封装相变材料用于储热

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Encapsulated phase change materials have been widely applied in energy-saving and energy-efficient process, while poor thermal conductivity of shell materials is the key problem needed to be solved for microanocapsules to satisfy the requirement of fast temperature response in some fields. In this study, a chemical reduction method was proposed to prepare nanocapsules with lauric acid (LA) as core and silver as shell which can improve the heat transfer performance. The results show that the thermal storage capability of the nanocapsules reached 95.29 J/g and the encapsulation ratio was 67.21%. Furthermore, the enthalpy loss of melting and freezing was negligible after 2000 cycles, indicating its good thermal reliabilities. Most importantly, the thermal conductivity enhancement of the nanocapsules can be as high as 333% to that of pure LA. Owing to these excellent properties, the nanocapsules are promising for thermal energy storage and thermo-regulation applications.
机译:封装相变材料已被广泛应用于节能,节能的过程中,而外壳材料导热性差是微/纳米胶囊需要解决的关键问题,以满足某些领域对快速温度响应的要求。本研究提出一种化学还原法,以月桂酸(LA)为核,银为壳,制备纳米胶囊,可以提高传热性能。结果表明,纳米胶囊的储热能力达到95.29 J / g,包封率为67.21%。此外,在2000次循环后,熔化和冻结的焓损失可以忽略不计,表明其良好的热可靠性。最重要的是,纳米胶囊的导热系数可以比纯LA的导热系数提高333%。由于这些优异的性能,纳米胶囊有望用于热能存储和温度调节应用。

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