Chen Dian, Chen Yan, Guo Xiuwang, Tao Wenwen, Wang Jinbao, Gao Shufeng, Gao Junkai
School of Port and Transportation Engineering, Zhejiang Ocean University Zhoushan 316022 People's Republic of China
Yinzhou Kefeng New Material of Polymer Co. Ltd. Ningbo 315100 People's Republic of China.
RSC Adv. 2018 Oct 4;8(60):34224-34231. doi: 10.1039/c8ra06536e.
Wrinkled mesoporous silica nanoparticle (WMSN), with a special and highly uniform morphology, large specific surface area and pore volume, high porosity and radial-like wrinkled channels, was successfully prepared by a simple and easy synthetic method. WMSN was used as the matrix of myristic acid (MA) to prepare a new attractive shape-stabilized PCM (MA/WMSN), and the wrinkled channels of WMSN are useful to prevent the leakage of PCM, and increase the thermal stability and phase change enthalpy of shape-stabilized PCM. Characterizations of MA/WMSN, such as structure, crystallization properties, chemical properties and thermal properties were studied, and the interaction mechanism between the WMSN and MA molecules was elucidated. TGA results suggested that MA/WMSN had excellent thermal stability. When the loading of MA in MA/WMSN was 65%, the melting and crystallizing enthalpies of MA/WSSN were 92.0 J g and 86.0 J g, respectively. Additionally, the thermal conductivity of MA/WMSN was 0.37 W mK, which was about 1.37 times higher than that of the pure MA. All of the study results demonstrated that MA/WMSN possessed of favourable thermal conductivity, high latent heats and excellent thermal stability, and therefore it could be a suitable thermal energy storage material for practical applications.
通过一种简单易行的合成方法成功制备了具有特殊且高度均匀形态、大比表面积和孔体积、高孔隙率以及径向皱纹通道的皱纹介孔二氧化硅纳米颗粒(WMSN)。WMSN被用作肉豆蔻酸(MA)的基质,以制备一种新型且有吸引力的形状稳定相变材料(MA/WMSN),WMSN的皱纹通道有助于防止相变材料泄漏,并提高形状稳定相变材料的热稳定性和相变焓。对MA/WMSN的结构、结晶性能、化学性质和热性质等进行了表征,并阐明了WMSN与MA分子之间的相互作用机制。热重分析(TGA)结果表明MA/WMSN具有优异的热稳定性。当MA/WMSN中MA的负载量为65%时,MA/WSSN的熔化焓和结晶焓分别为92.0 J/g和86.0 J/g。此外,MA/WMSN的热导率为0.37 W/(m·K),约为纯MA的1.37倍。所有研究结果表明,MA/WMSN具有良好的热导率、高潜热和优异的热稳定性,因此它可能是一种适用于实际应用的热能存储材料。