CAS Key Laboratory of Soft Matter Chemistry, Collaborative Innovation Centre of Chemistry for Energy Materials, School of Chemistry and Material Science, University of Science and Technology of China, Hefei, 230026, P.R. China.
State Key Laboratory of Particle Detectionand Electronics, University of Science and Technology of China, Hefei, 230026, P.R. China.
Nat Commun. 2023 May 12;14(1):2732. doi: 10.1038/s41467-023-38350-7.
The lack of high-performance and substantial supply of anion-exchange membranes is a major obstacle to future deployment of relevant electrochemical energy devices. Here, we select two isomers (m-terphenyl and p-terphenyl) and balance their ratio to prepare anion-exchange membranes with well-connected and uniformly-distributed ultramicropores based on robust chemical structures. The anion-exchange membranes display high ion-conducting, excellent barrier properties, and stability exceeding 8000 h at 80 °C in alkali. The assembled anion-exchange membranes present a desirable combination of performance and durability in several electrochemical energy storage devices: neutral aqueous organic redox flow batteries (energy efficiency of 77.2% at 100 mA cm, with negligible permeation of redox-active molecules over 1100 h), water electrolysis (current density of 5.4 A cm at 1.8 V, 90 °C, with durability over 3000 h), and fuel cells (power density of 1.61 W cm under a catalyst loading of 0.2 mg cm, with open-circuit voltage durability test over 1000 h). As a demonstration of upscaled production, the anion-exchange membranes achieve roll-to-roll manufacturing with a width greater than 1000 mm.
阴离子交换膜缺乏高性能和大量供应是未来电化学能源设备相关应用的主要障碍。在这里,我们选择了两种异构体(间三联苯和对三联苯)并平衡它们的比例,基于坚固的化学结构,制备了具有良好连接和均匀分布的超微孔的阴离子交换膜。阴离子交换膜表现出高离子传导性、优异的阻隔性能和在 80°C 碱性条件下超过 8000 小时的稳定性。组装的阴离子交换膜在几种电化学储能设备中具有性能和耐久性的理想结合:中性水系有机氧化还原流电池(在 100 mA cm 时能量效率为 77.2%,在 1100 小时内氧化还原活性分子的渗透率可忽略不计)、水电解(在 1.8 V、90°C 时电流密度为 5.4 A cm,耐久性超过 3000 小时)和燃料电池(在催化剂负载量为 0.2 mg cm 时功率密度为 1.61 W cm,开路电压耐久性测试超过 1000 小时)。作为规模化生产的演示,阴离子交换膜实现了大于 1000 毫米宽的卷对卷制造。