A novel form-stable phase-change material with high enthalpy and long endurance for photo-thermal energy storage

被引:0
作者
Yunyun Yang
Changhui Liu
Yanlong Shi
Jintao Hu
Huikun Chang
Yuanhua He
机构
[1] Civil Aviation Flight University of China,College of Civil Aviation Safety Engineering
[2] Civil Aviation Flight University of China,Civil Aircraft Fire Science and Safety Engineering Key Laboratory of Sichuan Province
来源
Bulletin of Materials Science | / 46卷
关键词
Multi-walled carbon nanotubes; supporting materials; form-stable PCMs; photo-thermal; thermal energy storage;
D O I
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摘要
To obtain a novel phase-change material with high enthalpy and long endurance for photo-thermal energy storage, multi-walled carbon nanotubes and h-BN were modified to form carboxylated supporting materials for HA, which have hydroxyl groups. The results of Fourier transform infrared spectroscopy and thermogravimetric analysis suggested the interaction between supporting materials and HA, which is induced by the electrostatic self-assembly of CNT and BN@CNT. The X-ray diffraction, differential scanning calorimetry, accelerated thermal cycling testing and scanning electron microscopy (SEM) were used to find the crystallization properties and microstructure of form-stable PCMs. With 15 wt% of BN@CNT, the thermal conductivity of HA was increased by 206–238%, BN@CNT-HA1 exhibited obvious crystalline performance with about 188 J g−1 of latent heat. Furthermore, BN@CNT-HA also showed a good thermal reliability even after 1000 times thermal treatment due to the electrostatic self-assembly in composites. The photo-thermal properties and SEM results of BN@CNT-HA2 suggested the electrostatic self-assembly of CNT and BN@CNT provides a promising control strategy for the functions of photo-thermal and thermal energy storage.
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[1]  
Qiu L(2019)undefined Renew. Energy 140 513-undefined
[2]  
Ouyang Y(2023)undefined Appl. Energy 332 25-undefined
[3]  
Feng Y(2022)undefined Appl. Energy 322 466-undefined
[4]  
Zhang X(2021)undefined J. Energy Storage 38 214-undefined
[5]  
Yang Y(2021)undefined Compos. Sci. Technol. 210 568-undefined
[6]  
Cai X(2013)undefined Appl. Energy 106 20465-undefined
[7]  
Kong W(2018)undefined Appl. Therm. Eng. 142 1173-undefined
[8]  
Gao D(2020)undefined Mater. Express 10 498-undefined
[9]  
Kwan TH(2017)undefined Constr. Build. Mater. 152 4622-undefined
[10]  
Dabwan YN(2019)undefined ACS Appl. Mater. Interfaces 11 622-undefined