Wang Ye-Hua, Yang Yu, Gao Fei-Yue, Zhang Xiao-Long, Zhu Lei, Yan Hui-Kun, Yang Peng-Peng, Gao Min-Rui
Division of Nanomaterials & Chemistry, Hefei National Research Center for Physical Sciences at the Microscale, University of Science and Technology of China, 230026, Hefei, China.
Angew Chem Int Ed Engl. 2024 Aug 5;63(32):e202407613. doi: 10.1002/anie.202407613. Epub 2024 Jun 19.
Anion-exchange membrane fuel cells provide the possibility to use platinum group metal-free catalysts, but the anodic hydrogen oxidation reaction (HOR) suffers from sluggish kinetics and its source is still debated. Here, over nickel-tungsten (Ni-W) alloy catalysts, we show that the Ni : W ratio greatly governs the HOR performance in alkaline electrolyte. Experimental and theoretical studies unravel that alloying with W can tune the unpaired electrons in Ni, tailoring the potential of zero charge and the catalytic surface to favor hydroxyl adsorption (OH). The OH species coordinately interact with potassium (K) ions, which break the K solvation sheath to leave free water molecules, yielding an improved connectivity of hydrogen-bond networks. Consequently, the optimal NiW alloy exhibits alkaline HOR activity superior to the state-of-the-art platinum on carbon (Pt/C) catalyst and operates steadily with negligible decay after 10,000 cycles. Our findings offer new understandings of alloyed HOR catalysts and will guide rational design of next-generation catalysts for fuel cells.
阴离子交换膜燃料电池提供了使用无铂族金属催化剂的可能性,但阳极氢氧化反应(HOR)存在动力学迟缓的问题,其根源仍存在争议。在此,在镍钨(Ni-W)合金催化剂上,我们表明Ni:W比例极大地决定了碱性电解质中的HOR性能。实验和理论研究表明,与W合金化可以调节Ni中的未配对电子,调整零电荷电位和催化表面以利于羟基吸附(OH)。OH物种与钾(K)离子发生配位相互作用,打破K溶剂化鞘层,留下自由水分子,从而改善氢键网络的连通性。因此,最佳的NiW合金表现出优于现有碳载铂(Pt/C)催化剂的碱性HOR活性,并且在10000次循环后稳定运行,衰减可忽略不计。我们的发现为合金化HOR催化剂提供了新的认识,并将指导燃料电池下一代催化剂的合理设计。