Sandwich Fibrous PEG Encapsulations for Thermal Energy Storage

Phase change materials (PCMs) textiles have been developed for personal thermal management (PTM) while limited loading amount of PCMs in textiles reduced thermal buffering effect. In this work, we proposed a sandwich fibrous encapsulation to store polyethylene glycol (PEG) with PEG loading amount of...

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Veröffentlicht in:Chemphyschem 2023-10, Vol.24 (19), p.e202300234-e202300234
Hauptverfasser: Yang, Kai, Zhang, Xiuling, Venkataraman, Mohanapriya, Wiener, Jakub, Tan, Xiaodong, Zhu, Guocheng, Yao, Juming, Militky, Jiri
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Sprache:eng
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Zusammenfassung:Phase change materials (PCMs) textiles have been developed for personal thermal management (PTM) while limited loading amount of PCMs in textiles reduced thermal buffering effect. In this work, we proposed a sandwich fibrous encapsulation to store polyethylene glycol (PEG) with PEG loading amount of 45 wt %, which consisted of polyester (PET) fabrics with hydrophobic coating as protection layers, polyurethane (PU) nanofibrous membranes as barrier layers and PEG-loaded viscose fabric as a PCM-loaded layer. The leakage was totally avoided by controlling weak interfacial adhesion between protection layer and melting PEG. The sandwich fibrous PEG encapsulations had an overall melting enthalpy value ranging from 50 J/g to 78 J/g and melting points ranging from 20 °C to 63 °C by using different PEGs. Besides, introduction of Fe microparticles in PCM-loaded layer enhanced thermal energy storage efficiency. We believe that the sandwich fibrous PEG encapsulation has a great potential in various fields.
ISSN:1439-4235
1439-7641
DOI:10.1002/cphc.202300234