This study examines the recent advancements in graphene-based phase change composites (PCCs), where graphene-based nanostructures such as graphene, graphene oxide (GO), functionalized graphene/GO, and graphene aerogel (GA) are incorporated into PCMs to substantially enhance their shape stability and
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DOI: 10.1016/j.csite.2022.102497 Corpus ID: 252988542; Graphene aerogel stabilized phase change material for thermal energy storage @article{Zhao2022GrapheneAS, title={Graphene
Phase-changing materials are nowadays getting global attention on account of their ability to store excess energy. Solar thermal energy can be stored in phase changing material (PCM) in the
Energy storage and conservation are receiving increased attention due to rising global energy demands. Therefore, the development of energy storage materials is crucial. Thermal energy
The use of phase change materials (PCMs) for TES became crucial after the energy crisis of 1973–1974, offering an elegant and practical option to improve the efficiency
The combination of reduced graphene oxide/cellulose sodium aerogel (rGCA) and lauric acid/myristic acid binary eutectic phase change gel (LMG) creates a composite phase change material that possesses
2 天之前· Once again, graphene''s versatility in producing paper-based electrodes for energy storage becomes visible. These systems behave as flexible energy storage films and, for more
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