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Durable Alkaline Seawater Oxidation over Hierarchical NiNH@NiFe LDH Nanoarrays
Haipeng Wang1,2,3, Li Yao4, Hua Chen5,6
1College of Nuclear Equipment and Nuclear Engineering, Yantai University, Yantai, Shandong 264005, China.
Abstract:
Seawater electrolysis is promising for renewable hydrogen production. However, the high concentration of chloride ions (Cl-) and their derivatives (HClO/ClO-) in seawater cause severe corrosion of the anode catalyst, posing a major challenge to the stability of the seawater electrolysis. Herein, we present the development of NiFe-layered double hydroxide nanosheets on nickel nitrate hydroxide nanoarrays supported on nickel foam. As a 3D catalyst electrode for alkaline seawater oxidation (ASO), such a hierarchical nanoarray (NiNH@NiFe LDH/NF) requires a low overpotential of 323 mV to obtain a current density of 1000 mA cm-2 and operates stably for 800 h at the same current density. In situ Raman spectroscopy analysis indicates that NiNH@NiFe LDH/NF releases nitrate ions that adsorb on the catalyst surface during the ASO process, favoring electrostatic repulsion to Cl- and enhancing the corrosion resistance of the catalyst. Furthermore, the two-electrode electrolyzer using NiNH@NiFe LDH/NF as the anode and Pt/C/NF as the cathode needs only 2.27 V to attain 500 mA cm-2 and maintains stable electrolysis for 460 h, highlighting its exceptional durability for practical seawater electrolysis applications.
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