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Optically-controlled long-term storage and release of thermal energy in phase-change materials

机译:光控制相变材料中热能的长期存储和释放

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摘要

Thermal energy storage offers enormous potential for a wide range of energy technologies. Phase-change materials offer state-of-the-art thermal storage due to high latent heat. However, spontaneous heat loss from thermally charged phase-change materials to cooler surroundings occurs due to the absence of a significant energy barrier for the liquid–solid transition. This prevents control over the thermal storage, and developing effective methods to address this problem has remained an elusive goal. Herein, we report a combination of photo-switching dopants and organic phase-change materials as a way to introduce an activation energy barrier for phase-change materials solidification and to conserve thermal energy in the materials, allowing them to be triggered optically to release their stored latent heat. This approach enables the retention of thermal energy (about 200 J g−1) in the materials for at least 10 h at temperatures lower than the original crystallization point, unlocking opportunities for portable thermal energy storage systems.
机译:热能存储为广泛的能源技术提供了巨大的潜力。由于高潜热,相变材料可提供最新的热量存储。但是,由于没有明显的能量-液体-固体过渡能垒,从带电的相变材料到较冷的环境会发生自发的热损失。这阻止了对蓄热器的控制,并且开发解决该问题的有效方法仍然是遥不可及的目标。本文中,我们报告了光开关掺杂剂和有机相变材料的组合,以此为相变材料的固化引入活化能势垒并节省材料中的热能,从而通过光学方式触发它们以释放其储存的潜热。这种方法可以在低于原始结晶点的温度下将热能(大约200 Jgg -1 )保留在材料中至少10 h,从而为便携式热能存储系统创造了机会。

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