Liang Jiashun, Fu Cehuang, Hwang Sooyeon, Dun Chaochao, Luo Liuxuan, Shadike Zulipiya, Shen Shuiyun, Zhang Junliang, Xu Hui, Wu Gang
Department of Energy, Environmental & Chemical Engineering, Washington University in St. Louis, St. Louis, MO, 63130, USA.
Department of Chemical and Biological Engineering, University at Buffalo, The State University of New York, Buffalo, NY, 14260, USA.
Adv Mater. 2025 Jan;37(4):e2409386. doi: 10.1002/adma.202409386. Epub 2024 Dec 5.
Iridium (Ir) is the most active and durable anode catalyst for the oxygen evolution reaction (OER) for proton exchange membrane water electrolyzers (PEMWEs). However, their large-scale applications are hindered by high costs and scarcity of Ir. Lowering Ir loadings below 1.0 mgcm causes significantly reduced PEMWE performance and durability. Therefore, developing efficient low Ir-based catalysts is critical to widely commercializing PEMWEs. Herein, an approach is presented for designing porous Ir metal aerogel (MA) catalysts via chemically dealloying IrCu alloys. The unique hierarchical pore structures and multiple channels of the Ir MA catalyst significantly increase electrochemical surface area (ECSA) and enhance OER activity compared to conventional Ir black catalysts, providing an effective solution to design low-Ir catalysts with improved Ir utilization and enhanced stability. An optimized membrane electrode assembly (MEA) with an Ir loading of 0.5 mg cm generated 2.0 A cm at 1.79 V, higher than the Ir black at a loading of 2.0 mg cm (1.63 A cm). The low-Ir MEA demonstrated an acceptable decay rate of ≈40 µV h during durability tests at 0.5 (>1200 h) and 2.0 A cm (400 h), outperforming the commercial Ir-based MEA (175 µV h at 2.0 mg cm).
铱(Ir)是质子交换膜水电解槽(PEMWE)析氧反应(OER)中活性最高且最耐用的阳极催化剂。然而,其大规模应用受到铱成本高昂和稀缺性的阻碍。将铱负载量降至1.0 mg/cm²以下会导致PEMWE性能和耐久性显著降低。因此,开发高效的低铱基催化剂对于PEMWE的广泛商业化至关重要。在此,提出了一种通过化学脱合金化IrCu合金来设计多孔铱金属气凝胶(MA)催化剂的方法。与传统的Ir黑催化剂相比,Ir MA催化剂独特的分级孔结构和多通道显著增加了电化学表面积(ECSA)并增强了OER活性,为设计具有更高铱利用率和增强稳定性的低铱催化剂提供了有效解决方案。一种铱负载量为0.5 mg/cm²的优化膜电极组件(MEA)在1.79 V时产生2.0 A/cm²的电流,高于负载量为2.0 mg/cm²的Ir黑(1.63 A/cm²)。在0.5 A/cm²(>1200 h)和2.0 A/cm²(400 h)的耐久性测试中,低铱MEA表现出约40 μV/h的可接受衰减率,优于商用铱基MEA(在2.0 mg/cm²时为175 μV/h)。