Li Xinyu, Zhang Zhongxin, Xie Zheng, Guo Xinrui, Yang Tianjian, Li Zhongli, Tu Mei, Rao Huaxin
College of Chemistry and Materials Science, Jinan University, Guangzhou 510632, China.
Nanomaterials (Basel). 2022 Mar 2;12(5):841. doi: 10.3390/nano12050841.
The introduction of inorganic additive or nanoparticles into fluorine-free proton exchange membranes (PEMs) can improve proton conductivity and have considerable effects on the performance of polymer electrolyte membrane fuel cells. Based on the sol-gel method and in situ polycondensation, novel cross-linked PEM and nanocomposite PEMs based on a sulfonated polysulfone (SPSU) matrix were prepared by introducing graphene oxide (GO) polymeric brushes and incorporating Pt-TiO nanoparticles into an SPSU matrix, respectively. The results showed that the incorporation of Pt-TiO nanoparticles could obviously enhance self-humidifying and thermal stability. In addition, GO polymer brushes fixed on polymeric PEM by forming a cross-linked network structure could not only solve the leakage of inorganic additives during use and compatibility problem with organic polymers, but also significantly improve proton conductivity and reduce methanol permeability of the nanocomposite PEM. Proton conductivity, water uptake and methanol permeability of the nanocomposite PEM can be up to 6.93 mS cm, 46.58% and be as low as 1.4157 × 10 cm s-1, respectively, which represent increases of about 70%, about 22% and a decrease of about 40%, respectively, compared with that of primary SPSU. Therefore, the synergic action of the covalent cross-linking, GO polymer brush and nanoparticles can significantly and simultaneously improve the overall performance of the composite PEM.
将无机添加剂或纳米颗粒引入无氟质子交换膜(PEM)中可提高质子传导率,并对聚合物电解质膜燃料电池的性能产生显著影响。基于溶胶-凝胶法和原位缩聚反应,分别通过引入氧化石墨烯(GO)聚合物刷并将Pt-TiO纳米颗粒掺入磺化聚砜(SPSU)基质中,制备了基于SPSU基质的新型交联PEM和纳米复合PEM。结果表明,掺入Pt-TiO纳米颗粒可明显提高自增湿性能和热稳定性。此外,通过形成交联网络结构固定在聚合物PEM上的GO聚合物刷不仅可以解决使用过程中无机添加剂的泄漏问题以及与有机聚合物的相容性问题,还可以显著提高纳米复合PEM的质子传导率并降低甲醇渗透率。纳米复合PEM的质子传导率、吸水率和甲醇渗透率分别可达6.93 mS/cm、46.58%和低至1.4157×10⁻⁷ cm²/s,与原始SPSU相比,分别提高了约70%、约22%和降低了约40%。因此,共价交联、GO聚合物刷和纳米颗粒的协同作用可显著且同时提高复合PEM的整体性能。