Dipartimento di Scienze Chimiche, Universitá degli student di Padova, Via Marzolo, 1, 35131, Padova (Italy).
ChemSusChem. 2015 Apr 24;8(8):1381-93. doi: 10.1002/cssc.201403049. Epub 2015 Mar 20.
Owing to the numerous benefits obtained when operating proton exchange membrane fuel cells at elevated temperature (>100 °C), the development of thermally stable proton exchange membranes that demonstrate conductivity under anhydrous conditions remains a significant goal for fuel cell technology. This paper presents composite membranes consisting of poly[2,2'-(m-phenylene)-5,5'-bibenzimidazole] (PBI4N) impregnated with a ZrO2 nanofiller of varying content (ranging from 0 to 22 wt %). The structure-property relationships of the acid-doped and undoped composite membranes have been studied using thermogravimetric analysis, differential scanning calorimetry, dynamic mechanical analysis, wide-angle X-ray scattering, infrared spectroscopy, and broadband electrical spectroscopy. Results indicate that the level of nanofiller has a significant effect on the membrane properties. From 0 to 8 wt %, the acid uptake as well as the thermal and mechanical properties of the membrane increase. As the nanofiller level is increased from 8 to 22 wt % the opposite effect is observed. At 185 °C, the ionic conductivity of [PBI4N(ZrO2 )0.231 ](H3 PO4 )13 is found to be 1.04×10(-1) S cm(-1) . This renders membranes of this type promising candidates for use in high-temperature proton exchange membrane fuel cells.
由于在高温(>100°C)下操作质子交换膜燃料电池可获得众多益处,因此开发在无水条件下具有导电性的热稳定质子交换膜仍然是燃料电池技术的重要目标。本文介绍了由聚[2,2'-(间苯撑)-5,5'-联苯并咪唑](PBI4N)与不同含量(0 至 22 wt%)的 ZrO2 纳米填料复合而成的复合膜。使用热重分析、差示扫描量热法、动态力学分析、广角 X 射线散射、红外光谱和宽带电谱研究了掺杂和未掺杂复合膜的结构-性能关系。结果表明,纳米填料的水平对膜性能有显著影响。在 0 至 8 wt%的范围内,酸吸收量以及膜的热和机械性能均增加。当纳米填料水平从 8 增加到 22 wt%时,观察到相反的效果。在 185°C 时,[PBI4N(ZrO2 )0.231 ](H3 PO4 )13 的离子电导率为 1.04×10(-1) S cm(-1) 。这使得此类膜成为高温质子交换膜燃料电池的有前途的候选材料。