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Controllable Thermal Rectification Realized in Binary Phase Change Composites

机译:二元相变复合材料中可控热整流的实现

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摘要

Phase transition is a natural phenomenon happened around our daily life, represented by the process from ice to water. While melting and solidifying at a certain temperature, a high heat of fusion is accompanied, classified as the latent heat. Phase change material (PCM) has been widely applied to store and release large amount of energy attributed to the distinctive thermal behavior. Here, with the help of nanoporous materials, we introduce a general strategy to achieve the binary eicosane/PEG4000 stuffed reduced graphene oxide aerogels, which has two ends with different melting points. It's successfully demonstrated this binary PCM composites exhibits thermal rectification characteristic. Partial phase transitions within porous networks instantaneously result in one end of the thermal conductivity saltation at a critical temperature, and therefore switch on or off the thermal rectification with the coefficient up to 1.23. This value can be further raised by adjusting the loading content of PCM. The uniqueness of this device lies in its performance as a normal thermal conductor at low temperature, only exhibiting rectification phenomenon when temperature is higher than a critical value. The stated technology has broad applications for thermal energy control in macroscopic scale such as energy-efficiency building or nanodevice thermal management.
机译:相变是我们日常生活中发生的自然现象,以从冰到水的过程为代表。在一定温度下熔化和固化时,伴随着高的熔化热,归类为潜热。相变材料(PCM)已被广泛应用于存储和释放由于独特的热行为而产生的大量能量。在这里,借助纳米多孔材料,我们介绍了一种通用的策略来实现二元二十碳烷/ PEG4000填充还原型氧化石墨烯气凝胶,其两端具有不同的熔点。成功证明了这种二元PCM复合材料具有热整流特性。多孔网络中的部分相变会在临界温度下瞬间导致导热盐析的一端,因此以高达1.23的系数开启或关闭热精馏。可以通过调整PCM的加载内容来进一步提高该值。该器件的独特之处在于其在低温下作为普通导热体的性能,仅在温度高于临界值时才显示整流现象。所述技术在宏观规模的热能控制方面具有广泛的应用,例如节能建筑或纳米器件热管理。

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