Cellulose aerogel-based phase change materials (CA-PCMs) combine the latent heat storage capability of phase change materials (PCMs) with the hierarchical porous architecture, low density, and structural stability of cellulose aerogels (CA), providing a promising platform for sustainable thermal energy storage. This re...
Shakshi Bhardwaj, Shiva Singh, P. Dixit et al.· Renewable & Sustainable Ener...· 0 citations
Latent heat thermal energy storage (LHTES) with phase change materials (PCMs) has high energy density and near-isothermal operation; however, the low thermal conductivity of PCM is a big challenge. This review article explores the nano-enhanced phase change materials (NePCMs) with copper oxide–ethylene glycol (CuO–EG)...
Sharmin Akter, Md. Anowar Hossain, H. M. M. Afroz· International journal of app...· 0 citations
Carbon-based shape-stabilized phase change materials (SSPCMs) are promising for thermal energy storage, but their performance is often limited by low PCM loading. Enhancing the compatibility between the PCM and supporting matrix is an effective approach to address this issue. Herein, biomass waste was converted into ac...
Phase-change energy storage materials have the potential to improve the durability of hydraulic concrete; however, phase-change materials suitable for dam engineering within the 0–5 °C phase-transition range remain limited. In this study, a binary phase-change material was prepared by melt blending n-decanol (DA) and n...
Guan-Yu Zhu, Hong-De Zhen, Nan Wang et al.· Materials· 0 citations
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