Faculty of Physics, Lomonosov Moscow State University, Leninskiye Gory 1-2, GSP-1, Moscow, 119991, Russia.
Beilstein J Nanotechnol. 2013 Aug 21;4:481-92. doi: 10.3762/bjnano.4.57. eCollection 2013.
Novel composite membranes for high temperature polymer-electrolyte fuel cells (HT-PEFC) based on a poly[oxy-3,3-bis(4'-benzimidazol-2″-ylphenyl)phtalide-5″(6″)-diyl] (PBI-O-PhT) polymer with small amounts of added Zr were prepared. It was shown in a model reaction between zirconium acetylacetonate (Zr(acac)4) and benzimidazole (BI) that Zr-atoms are capable to form chemical bonds with BI. Thus, Zr may be used as a crosslinking agent for PBI membranes. The obtained Zr/PBI-O-PhT composite membranes were examined by means of SAXS, thermomechanical analysis (TMA), and were tested in operating fuel cells by means of stationary voltammetry and impedance spectroscopy. The new membranes showed excellent stability in a 2000-hour fuel cell (FC) durability test. The modification of the PBI-O-PhT films with Zr facilitated an increase of the phosphoric acid (PA) uptake by the membranes, which resulted in an up to 2.5 times increased proton conductivity. The existence of an optimal amount of Zr content in the modified PBI-O-PhT film was shown. Larger amounts of Zr lead to a lower PA doping level and a reduced conductivity due to an excessively high degree of crosslinking.
基于少量添加的锆原子的聚氧-3,3-双(4'-苯并咪唑-2''-基苯基)酞嗪-5''(6'')-二基聚合物,制备了用于高温聚合物电解质燃料电池(HT-PEFC)的新型复合膜。在锆乙酰丙酮酸盐(Zr(acac)4)和苯并咪唑(BI)之间的模型反应中表明,Zr 原子能够与 BI 形成化学键。因此,Zr 可以用作 PBI 膜的交联剂。通过小角 X 射线散射(SAXS)、热机械分析(TMA)对获得的 Zr/PBI-O-PhT 复合膜进行了研究,并通过静态伏安法和阻抗谱在运行的燃料电池中对其进行了测试。新膜在 2000 小时的燃料电池(FC)耐久性测试中表现出优异的稳定性。Zr 对 PBI-O-PhT 膜的改性促进了膜对磷酸(PA)的吸收,从而使质子电导率提高了 2.5 倍。显示了在改性 PBI-O-PhT 膜中存在最佳量的 Zr 含量。Zr 含量过多会导致 PA 掺杂水平降低,交联度过高,电导率降低。