Wei‐Shou Hu, Lian Zhao, Xinkun Xiao, Jia Liu, S.Y. Gao, Huaguo Zhong, Yong Li, Yanan Li, Changwei Su, Wenhao Feng, Zihan Chen
The high cost of noble metal catalysts seriously restricts the large-scale application of electrocatalytic hydrogen evolution reaction (HER). Although nickel-based alloys have shown potential as alternative materials, their performance still needs to be further improved through synergistic optimization of composition and structure. In this study, porous Ni-W-Mo alloy was prepared by electrodeposition in pyrophosphate electrolyte using dynamic hydrogen bubble template method (DHBT). The optimized NiWMo0.6 alloy exhibits a three-dimensional porous structure, and the ECSA reaches 229.13 cm 2 , which is 10.7 times higher than that of the Fe substrate. Its overpotential (η 10 = 147 mV, η₂₀ = 190 mV) and charge transfer resistance (5.449 Ω·cm 2 ) are significantly better than those of Ni-W alloy. After 18 h of stability test, the performance slightly decay, which confirmed the durability of the structure. The introduction of Mo optimizes the electronic structure of Ni-W alloy and cooperates with porous morphology to increase the density of active sites. This study provides a new strategy for the synergistic regulation of composition and structure for the design of low-cost and efficient HER catalysts.