Phase-change materials (PCMs) attract much attention with regard to their capability of mitigating fossil fuel-based heating in in-building applications, due to the responsive accumulation and release of thermal energy as a latent heat of reversible phase transitions. Organic PCMs possess high latent heat storage capacity and thermal reliability. However, bare PCMs suffer from leakages in the liquid form. Here, we demonstrate a reliable approach to improve the shape stability of organic PCM n-octadecane by encapsulation via interfacial polymerization at an oil/water interface of Pickering emulsion. Cellulose nanocrystals are employed as emulsion stabilizers and branched oligo-polyol with high functionality to crosslink the polyurethane shel...
This paper explored a new approach to prepare phase change microcapsules using carbon-based particle...
For heat energy storage application, polyurea. microcapsules containing phase change material, n-eic...
This study deals with fabrication, physico–chemical characterizations and thermal properties of n-oc...
Phase-change materials (PCMs) attract much attention with regard to their capability of mitigating f...
Organic phase-change materials (PCMs) hold promise in developing advanced thermoregulation and respo...
Phase change materials (PCM) has been increasingly used over the past decades to combat the large am...
Active substances can be stabilized to be protected from undesirable reactions, aggregation, and lea...
This study introduced a robust and promising approach to fabricate highly stable phase change materi...
The microencapsulation of paraffin as a phase change material (PCM) using poly methyl methacrylate (...
| openaire: EC/H2020/788489/EU//BioELCellWe use acetylated cellulose nanofibrils (AcCNF) to stabiliz...
Paraffin, the most common phase change material, has been widely utilized as the core component in t...
The accumulation of thermal energy in construction elements during daytime, and its release during a...
Microencapsulation of phase change materials (PCMs) is an attractive opportunity for broadening thei...
Phase change materials (PCMs) with suitable melting ranges for thermal energy storage applications a...
Phase change materials absorb the thermal energy when changing their phases (e.g., solid-to-liquid) ...
This paper explored a new approach to prepare phase change microcapsules using carbon-based particle...
For heat energy storage application, polyurea. microcapsules containing phase change material, n-eic...
This study deals with fabrication, physico–chemical characterizations and thermal properties of n-oc...
Phase-change materials (PCMs) attract much attention with regard to their capability of mitigating f...
Organic phase-change materials (PCMs) hold promise in developing advanced thermoregulation and respo...
Phase change materials (PCM) has been increasingly used over the past decades to combat the large am...
Active substances can be stabilized to be protected from undesirable reactions, aggregation, and lea...
This study introduced a robust and promising approach to fabricate highly stable phase change materi...
The microencapsulation of paraffin as a phase change material (PCM) using poly methyl methacrylate (...
| openaire: EC/H2020/788489/EU//BioELCellWe use acetylated cellulose nanofibrils (AcCNF) to stabiliz...
Paraffin, the most common phase change material, has been widely utilized as the core component in t...
The accumulation of thermal energy in construction elements during daytime, and its release during a...
Microencapsulation of phase change materials (PCMs) is an attractive opportunity for broadening thei...
Phase change materials (PCMs) with suitable melting ranges for thermal energy storage applications a...
Phase change materials absorb the thermal energy when changing their phases (e.g., solid-to-liquid) ...
This paper explored a new approach to prepare phase change microcapsules using carbon-based particle...
For heat energy storage application, polyurea. microcapsules containing phase change material, n-eic...
This study deals with fabrication, physico–chemical characterizations and thermal properties of n-oc...