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中国物理学会期刊

纳米组装相变储热材料的热设计前沿

CSTR: 32037.14.aps.71.20211776

Thermal design frontiers of nano-assembled phase change materials for heat storage

CSTR: 32037.14.aps.71.20211776
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  • 本文简单回顾了固液相变储热材料发展历程, 重点针对纳米多孔定形相变材料, 从材料层面的研发设计, 到热物理层面的微观限域空间负载、结晶、导热机理, 乃至围绕异相/异质匹配提出的显著提升相变蓄传热性能的强化手段进行了总结. 同时, 指出了目前受制于单一尺度孔径无法兼顾储释热的密度和速率的现状, 并探讨在此基础上借助新型多级尺度孔径的骨架材料以突破瓶颈的可能. 最后, 系统梳理了与之伴随的一系列亟待解决的科学问题、机遇和挑战.

     

    The present paper briefly reviews the development progress of solid-liquid phase change materials, particularly the nano-porous shape-stabilized phase change materials. We outline the designs and syntheses of the heat storage functional materials and the thermophysical mechanism of loading, crystallization, and thermal transport in nano-confined space. Besides, the remarkable methods to enhance the heat storage and release performance of heterogeneous materials are included. However, at present, the single-size porous materials cannot satisfy the requirements for high heat storage/release rate and great thermal energy density simultaneously. Based on this, the novel hierarchical porous frameworks materials are explored to overcome these obstacles. For this purpose, some scientific problems, opportunities, and challenges are summarized at the end of this paper.

     

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