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◆ Advanced Energy Materials2026-07-31· Overpotential

Dual‐Functional Ru <sub>2</sub> P Nanoparticle‐Decorated Ru/N,P‐Doped Carbon Nanofibers for Efficient Hydrazine Oxidation‐Assisted Hydrogen Production and Zinc‐Air‐Hydrazine Battery

Xianqiang Yu, Linfeng Zhang, Mengxiao Zhong, Wei Song, Xiaofeng Lu

原始摘要(英文原文)· Original abstract
ABSTRACT Efficient and durable electrocatalysts are essential to sustainable hydrogen (H 2 ) generation and advanced energy storage. Herein, Ru 2 P nanoparticles‐decorated Ru/N,P‐doped carbon nanofibers (Ru 2 P@Ru/NPCNFs) have been fabricated through an electrospinning‐carbonization‐thermal phosphorization strategy. The resulting material establishes itself as a premier dual‐functional electrocatalyst. For the hydrazine oxidation reaction (HzOR), it requires a potential of only −0.013 V to reach 100 mA cm −2 , a significant improvement over the Ru/N‐doped CNFs (NCNFs) sample. Concurrently, this catalyst drives the hydrogen evolution reaction (HER) at an industrial‐grade current density of 1000 mA cm −2 with an overpotential of just 155 mV in 1 M KOH, exceeding the benchmark set by commercial Pt/C and most advanced reported catalysts. Leveraging these advantages, the synergistic effects enable an integrated water‐splitting system assisted by hydrazine oxidation, driving a H 2 production rate 12 times higher than that of conventional water electrolysis. Furthermore, a rechargeable Zn‐air‐hydrazine battery is constructed, demonstrating excellent activity and durability. This work provides a versatile electrocatalyst and opens a new avenue for hybrid energy conversion and storage beyond conventional electrolysis.
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Dual‐Functional Ru <sub>2</sub> P Nanoparticle‐Decorated Ru/N,P‐Doped Carbon Nanofibers for Efficient Hydrazine Oxidation‐Assisted Hydrogen Production and Zinc‐Air‐Hydrazine Battery — 科研速览 Science Skim