Shao Feilong, Wang Lingling, Luo Rongrong, Yu Wei, Xie Huaqing
School of Energy and Materials, Shanghai Polytechnic University, Shanghai 201209, China.
Shanghai Engineering Research Center of Advanced Thermal Functional Materials, Shanghai Polytechnic University, Shanghai 201209, China.
ACS Appl Mater Interfaces. 2023 Aug 16;15(32):38474-38484. doi: 10.1021/acsami.3c07429. Epub 2023 Aug 2.
Organic-inorganic composite phase change materials (PCMs) are promising in the fields of solar energy storage and building thermal management. However, combining inorganic with organic PCMs meets a great challenge. In the current work, a shape-stable hybrid emulsion gel (EGel/GO) is developed via Pickering emulsion polymerization, which seamlessly combines sodium acetate trihydrate (SAT) in the water phase with paraffin wax (PW) in the oil phase. The polymer dual-phase cross-linking in EGel/GO forms a supporting framework that effectively enhances the material's shape stability, slows the loss of crystalline water in hydrates, and reduces supercooling. The addition of graphene oxide (GO) enhances EGel/GO-0.5's optical absorption properties, resulting in photothermal conversion efficiency as high as 89.1%. Furthermore, EGel/GO not only has high latent heat of 225.08 J/g but also has almost no leakage and no phase separation. The Pickering emulsion polymerization method paves a broad avenue for combining organic with inorganic PCMs, which is an ideal choice for the effective utilization of solar energy and building energy storage.
有机-无机复合相变材料(PCMs)在太阳能储存和建筑热管理领域具有广阔前景。然而,将无机相变材料与有机相变材料相结合面临巨大挑战。在当前工作中,通过皮克林乳液聚合制备了一种形状稳定的混合乳液凝胶(EGel/GO),它将水相中的三水合醋酸钠(SAT)与油相中的石蜡(PW)无缝结合。EGel/GO中的聚合物双相交联形成了一个支撑框架,有效增强了材料的形状稳定性,减缓了水合物中结晶水的损失,并降低了过冷度。氧化石墨烯(GO)的加入增强了EGel/GO-0.5的光吸收性能,使其光热转换效率高达89.1%。此外,EGel/GO不仅具有225.08 J/g的高潜热,而且几乎无泄漏且无相分离。皮克林乳液聚合法为有机与无机相变材料的结合开辟了一条广阔的道路,是太阳能有效利用和建筑储能的理想选择。