Microencapsulated phase change materials (MEPCM) could be used for energy saving applications in buildings due to their relatively high energy storage capacities at constant temperature, which could passively reduce peak cooling loads in summer. In this study, poly(methyl methacrylate-co-methacrylic acid) (PMMA-MAA) was used as a shell material to fabricate MEPCM by crosslinking methyl methacrylate (MMA) and methacrylic acid (MAA) through in-situ suspension-like polymerization method. The effects of initiator weight percentage and the ratio of shell monomers for the preparation of MEPCM were also investigated. The experimental results showed that the best MEPCM sample was achieved with a shell monomer weight ratio of 80% MMA : 20% MAA and t...
For passive building applications, phase change materials (PCMs) are microencapsulated to avoid leak...
A method for preparing and characterizing microencapsulated phase change materials (MPCM) was develo...
15th International Scientific Conference on Renewable Energy and Innovative Technologies -- JUN 10-1...
Microencapsulated phase change materials (MEPCM) could be used for energy saving applications in bui...
This research focused on the development of MEPCMs for thermal energy storage in low carbon building...
Phase change energy storage materials have been recognized as potential energy-saving materials for ...
In this study, two different types of Phase Change Materials (PCM) suitable for Thermal Energy Stora...
Microencapsulated Phase Change Materials (MPCM) are widely used in active and passive systems for th...
In this study, caprylic acid (octanoic acid) suitable for thermal energy storage applications was mi...
Experimental study has been carried out towards the development of a multiphase change material (MCM...
With serious energy crisis in recent years, phase change materials (PCMs) are among the best choice ...
AbstractThe present work studies a Phase Change Slurry (PCS) as a proposed Thermal Energy Storage (T...
A method for preparing and characterizing microencapsulated phase change materials (MPCM) was develo...
Microcapsules containing phase change materials (PCM) are commonly used in many energy storage field...
Phase change materials (PCM) can be employed in many fields because of their capacity to absorb and ...
For passive building applications, phase change materials (PCMs) are microencapsulated to avoid leak...
A method for preparing and characterizing microencapsulated phase change materials (MPCM) was develo...
15th International Scientific Conference on Renewable Energy and Innovative Technologies -- JUN 10-1...
Microencapsulated phase change materials (MEPCM) could be used for energy saving applications in bui...
This research focused on the development of MEPCMs for thermal energy storage in low carbon building...
Phase change energy storage materials have been recognized as potential energy-saving materials for ...
In this study, two different types of Phase Change Materials (PCM) suitable for Thermal Energy Stora...
Microencapsulated Phase Change Materials (MPCM) are widely used in active and passive systems for th...
In this study, caprylic acid (octanoic acid) suitable for thermal energy storage applications was mi...
Experimental study has been carried out towards the development of a multiphase change material (MCM...
With serious energy crisis in recent years, phase change materials (PCMs) are among the best choice ...
AbstractThe present work studies a Phase Change Slurry (PCS) as a proposed Thermal Energy Storage (T...
A method for preparing and characterizing microencapsulated phase change materials (MPCM) was develo...
Microcapsules containing phase change materials (PCM) are commonly used in many energy storage field...
Phase change materials (PCM) can be employed in many fields because of their capacity to absorb and ...
For passive building applications, phase change materials (PCMs) are microencapsulated to avoid leak...
A method for preparing and characterizing microencapsulated phase change materials (MPCM) was develo...
15th International Scientific Conference on Renewable Energy and Innovative Technologies -- JUN 10-1...