Zhang Zijun, Wang Jingxing, Tang Xi, Liu Yi, Han Zhi, Chen Yan
School of Port and Transportation Engineering, Zhejiang Ocean University, Zhoushan, 316022, China.
School of Foreign Languages, Zhejiang Ocean University, Zhoushan, 316022, China.
Sci Rep. 2019 Nov 5;9(1):16056. doi: 10.1038/s41598-019-52553-3.
Mesoporous silica nanoscale microsphere (MSNM), with a special morphology, high porosity, large pore volume and specific surface area, was successfully prepared and used as the matrix material of lauric acid (LA) to prepare a favorable shape-stabilized phase change material (LA/MSNM). The porous network structure of MSNM is effective to prevent the leakage and enhance the thermal stability of LA/MSNM. For comparison, shape-stabilized phase change material of LA/AC, which contained commercially purchased active carbon (AC) and LA, was prepared by the same method. Characterizations of LA/MSNM and LA/AC, such as chemical properties, structure, thermal properties and crystallization properties were studied. The mechanisms of interaction between LA molecules and MSNM or AC were explicated. The results of TGA test showed that the LA/MSNM and LA/AC had superior thermal stability, and however, the melting and solidification enthalpies of LA/MSNM were much higher than that of LA/AC, which was attributed that the loading capacity of MSNM was better than that of LA/AC. All of the study results demonstrated that the mesoporous silica nanoscale microspheres of MSNM synthesized in this study possessed the potential for practical applications as a suitable supporter of organic phase change materials.
成功制备了具有特殊形貌、高孔隙率、大孔体积和比表面积的介孔二氧化硅纳米微球(MSNM),并将其用作月桂酸(LA)的基质材料,制备出性能良好的形状稳定相变材料(LA/MSNM)。MSNM的多孔网络结构有效地防止了LA/MSNM的泄漏并提高了其热稳定性。为作比较,采用相同方法制备了含有市售活性炭(AC)和LA的形状稳定相变材料LA/AC。研究了LA/MSNM和LA/AC的化学性质、结构、热性质和结晶性质等表征。阐述了LA分子与MSNM或AC之间的相互作用机理。热重分析(TGA)测试结果表明,LA/MSNM和LA/AC具有优异的热稳定性,然而,LA/MSNM的熔化和凝固焓远高于LA/AC,这归因于MSNM的负载能力优于LA/AC。所有研究结果表明,本研究合成的介孔二氧化硅纳米微球MSNM作为有机相变材料的合适载体具有实际应用潜力。