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◆ Journal of Composites Science2025-12-03· Eutectic system

Advances in the Stabilization of Eutectic Salts as Phase Change Materials (PCMs) for Enhanced Thermal Performance: A Critical Review

Elmer Marcial Cervantes-Ramírez, Danna Lizeth Trejo-Arroyo, J.C. Cruz, Blandy Berenice Pamplona Solís, Javier Rodrigo Nahuat-Sansores

原始摘要(英文原文)· Original abstract
Inorganic phase change materials (PCMs) can be employed in passive thermal regulation systems as building envelopes to decrease energy consumption. Nonetheless, they present a manifold of issues, such as leakage, incongruent melting, crystallization, and supercooling, which limit their performance and durability. A widely explored approach to address these shortcomings is the development of eutectic salts and their stabilization through techniques such as the use of porous substrates and encapsulation, in addition to combining them with the incorporation of carbon derivatives as fillers and nucleating agents to enhance thermal performance and durability during charge and discharge cycles. In this study, a critical review is developed via analysis and discussions of different methods for incorporating inorganic PCMs. The focus is mainly on eutectic salts and the challenges associated with their application, the generation of new eutectic salts, stabilization methods, and use cases where the incorporation of fillers, the use of porous substrates, and the implementation of nucleating agents have contributed to improving thermal performance, reducing the degree of supercooling, and minimizing PCM leakage during phase transitions.
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Advances in the Stabilization of Eutectic Salts as Phase Change Materials (PCMs) for Enhanced Thermal Performance: A Critical Review — 科研速览 Science Skim