Zhang Feng, Liu Tian-Yu, Hou Gui-Hua, Guan Rong-Feng, Zhang Jun-Hao
Key Laboratory for Advanced Technology in Environmental Protection of Jiangsu Province, Yancheng Institute of Technology, Yancheng 224051, P. R. China.
Department of Chemistry and Biochemistry, University of California, Santa Cruz, CA 95064, USA.
J Nanosci Nanotechnol. 2018 Jun 1;18(6):4413-4417. doi: 10.1166/jnn.2018.15199.
The fast development of solid-liquid phase change materials calls for nanomaterials with large specific surface area for rapid heat transfer and encapsulation of phase change materials to prevent potential leakage. Here we report a combined miniemulsion/emulsion polymerization method to prepare poly(styrene-co-acrylic acid)-encapsulated paraffin (paraffin@P(St-co-AA)) nanocapsules. The method could suppress the shortcomings of common miniemulsion polymerization (such as evaporation of monomer and decomposition of initiator during ultrasonication). The paraffin@P(St-co-AA) nanocapsules are uniform in size and the polymer shell can be controlled by the weight ratio of St to paraffin. The phase change behavior of the nanocapsules is similar to that of pure paraffin. We believe our method can also be utilized to synthesize other core-shell phase change materials.
固-液相变材料的快速发展需要具有大比表面积的纳米材料,以实现快速传热并封装相变材料以防止潜在的泄漏。在此,我们报道了一种结合微乳液/乳液聚合的方法来制备聚(苯乙烯-共-丙烯酸)包覆石蜡(石蜡@P(St-co-AA))纳米胶囊。该方法可以克服普通微乳液聚合的缺点(如超声处理过程中单体的蒸发和引发剂的分解)。石蜡@P(St-co-AA)纳米胶囊尺寸均匀,聚合物壳层可以通过苯乙烯与石蜡的重量比来控制。纳米胶囊的相变行为与纯石蜡相似。我们相信我们的方法也可用于合成其他核壳相变材料。