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◆ Chemical Engineering Journal2026-06-03· Anode

Laser-directed approach for low-loading and highly efficient transition-metal-based high-entropy alloy anode for alkaline water electrolysis

Yashwant Pratap Kharwar, Siva Sankar Nemala, Puspendu Guha, Waqas Qamar Zaman, Zhipeng Yu, Srinivas Katam, Avnish Singh Pal, Francis Leonard Deepak, Travis Buckle, André Fonseca, Yury V. Kolen'ko, Sitaramanjaneya Mouli Thalluri

原始摘要(英文原文)· Original abstract
High-entropy alloys (HEAs) offer substantial potential for electrocatalysis due to lattice distortion, entropy stabilization, and the ‘cocktail effect,’ which create numerous catalytic centres. However, a significant challenge remains in developing reliable and scalable fabrication methods capable of producing nanometer-level HEA coatings to minimize the loading of critical raw materials (CRMs) without compromising performance. Addressing this gap, we report a laser-directed approach f or the synthesis of FeCoNiZnMn (FCNZM) HEA thin films onto nickel fibre (NFb) substrates. Beyond reducing the time and expense, this method offers strong HEA-substrate interactions, making it more active and durable in a harsh alkaline environment. As a result, the optimized FCNZM_2td_25p electrocatalyst demonstrates exceptional kinetics with an overpotential of 235.5 mV at 10 mA cm −2 and a favourable Tafel slope of 48 mV dec −1 . This initial activity is matched by extraordinary stability, maintaining performance for over 100 h at a high current density of 500 mA cm −2 and exceeding 160 h in a single-cell configuration against an Ir/NFb benchmark. Post-mortem characterization via TEM, XPS, and XAS reveals that the superior durability originates from a dynamic restructuring process involving the leaching of an unstable Zn-rich surface layer. These results demonstrate that our laser-directed approach provides a scalable pathway for low-loading, highly efficient transition-metal-based HEA anode, offering a viable PGM-free alternative for industrial alkaline water electrolysis.
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Laser-directed approach for low-loading and highly efficient transition-metal-based high-entropy alloy anode for alkaline water electrolysis — 科研速览 Science Skim