Fabrication and performances of microencapsulated palmitic acid with enhanced thermal properties

Alumina; Aluminum hydroxide; Aluminum oxide; Fabrication; Microencapsulation; Microstructure; Palmitic acid; Phase change materials; Saturated fatty acids; Sol-gel process; Sol-gels; Specific heat; Thermodynamic stability; Aluminum isopropoxides; Encapsulation efficiency; Enhanced thermal conductivi...

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Bibliographic Details
Main Authors: Latibari S.T., Mehrali M., Mahlia T.M.I., Metselaar H.S.C.
Other Authors: 55872422100
Format: Article
Published: American Chemical Society 2023
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Summary:Alumina; Aluminum hydroxide; Aluminum oxide; Fabrication; Microencapsulation; Microstructure; Palmitic acid; Phase change materials; Saturated fatty acids; Sol-gel process; Sol-gels; Specific heat; Thermodynamic stability; Aluminum isopropoxides; Encapsulation efficiency; Enhanced thermal conductivity; High thermal conductivity; Microencapsulated phase change material; Stability enhancement; Storage potential; Thermal effusivity; Thermal conductivity