TY - JOUR
T1 - A review on synthesis, characterization and application of nanoencapsulated phase change materials for thermal energy storage systems
AU - Peng, Hao
AU - Wang, Jinghang
AU - Zhang, Xinwen
AU - Ma, Jie
AU - Shen, Tongtong
AU - Li, Songlin
AU - Dong, Beibei
N1 - Publisher Copyright:
© 2020 Elsevier Ltd
PY - 2021/2/25
Y1 - 2021/2/25
N2 - Nanoencapsulated phase change materials (NEPCMs) are expected to be one of the most potential energy storage materials. After years of research and development, a mature and huge microencapsulated phase change material (MEPCM) industry has been built in terms of both synthetic technology and practical application. However, microcapsules also have its limitations, such as low heat transfer efficiency, high breakage rate and so on. In order to solve these problems, NEPCMs are being successfully developed. In this review, the research background and development process of NEPCMs were introduced. The structure, principle and function of NEPCMs, including the types and selection principles of core and shell materials were analyzed. Besides, almost all of the common nanoencapsulation methods were presented, some of the methods were emphatically introduced such as in-situ polymerization, interfacial polymerization, emulsion polymerization, miniemulsion polymerization, suspension polymerization and sol–gel method. Furthermore, the thermal properties, physical properties and chemical properties of nanocapsules were discussed and analyzed. Finally, the applications of nanocapsules in building, textile, slurry, solar energy and food industry were summarized. This study was devoted to PCM, nanoencapsulation methods, characterization and application prospects.
AB - Nanoencapsulated phase change materials (NEPCMs) are expected to be one of the most potential energy storage materials. After years of research and development, a mature and huge microencapsulated phase change material (MEPCM) industry has been built in terms of both synthetic technology and practical application. However, microcapsules also have its limitations, such as low heat transfer efficiency, high breakage rate and so on. In order to solve these problems, NEPCMs are being successfully developed. In this review, the research background and development process of NEPCMs were introduced. The structure, principle and function of NEPCMs, including the types and selection principles of core and shell materials were analyzed. Besides, almost all of the common nanoencapsulation methods were presented, some of the methods were emphatically introduced such as in-situ polymerization, interfacial polymerization, emulsion polymerization, miniemulsion polymerization, suspension polymerization and sol–gel method. Furthermore, the thermal properties, physical properties and chemical properties of nanocapsules were discussed and analyzed. Finally, the applications of nanocapsules in building, textile, slurry, solar energy and food industry were summarized. This study was devoted to PCM, nanoencapsulation methods, characterization and application prospects.
KW - Microencapsulated phase change material
KW - Nanocapsule application
KW - Nanoencapsulated phase change material
KW - Nanoencapsulation method
KW - Thermal energy storage
UR - http://www.scopus.com/inward/record.url?scp=85096523866&partnerID=8YFLogxK
U2 - 10.1016/j.applthermaleng.2020.116326
DO - 10.1016/j.applthermaleng.2020.116326
M3 - 文章
AN - SCOPUS:85096523866
SN - 1359-4311
VL - 185
JO - Applied Thermal Engineering
JF - Applied Thermal Engineering
M1 - 116326
ER -