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Exploring flame-retardant, shape-stabilized multi-functional composite phase change materials

delete2025-04-01
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PRE
AI
肖永双 (Yongshuang Xiao)
T
Teng Li
Y
Yuanjun Yang
J
Jiahui Lin
X
Xinxin Sheng
J
Jintao Huang *
T
Tongbing Li
X
Xiang Lu *
谢德龙 cover
谢德龙 (Delong Xie) *
DOI:10.1016/j.solmat.2024.113369delete
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Abstract

Abstract

En 中文
In recent years, the issue of fossil energy depletion has become increasingly prominent. Phase change materials (PCMs), as a state-of-the-art thermal energy storage technology, have garnered significant attention. Currently, solid-liquid organic PCMs are widely utilized in various applications. However, pure solid-liquid organic PCMs are prone to leakage and are flammable because of their organic chemical structure, posing a significant risk to human life and property. Consequently, enhancing the flame retardancy of PCMs is imperative. This review highlights recent advancements in the development of multi-functional composite PCMs (CPCMs) with superior thermal and shape stability and enhanced flame retardancy. The flame-retardant mechanisms are elaborated, and the relationship between structure and performance is emphasized. Advanced applications of these CPCMs, including battery thermal management, building materials, flame-retardant textiles, and solar energy conversion, are discussed comprehensively. Finally, this review addresses the existing challenges and future development directions, aiming to inspire further research into flame-retardant PCMs and advance the next generation of multi-functional CPCMs.
Keywords:
Phase change material
Latent heat storage
Flame retardancy
Halogen-free flame retardants

Journal

Solar Energy Materials and Solar Cells cover
Solar Energy Materials and Solar Cells
IF:
6.3
Papers:
1.2W
Citations:
3.6W

Organization

G
guangdong university of technology
Scholars:
3.0W
Papers: 2.0W
Citations: 36