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Synthesis of NiRu-Layered Double Hydroxide for Enhanced Oxygen Evolution Reaction.


ABSTRACT: Nickel-ruthenium layered double hydroxide (NiRu-LDH) was synthesized by coprecipitation using formamide as both solvent and intercalant. The synthesis was performed at various temperatures to study the impact of temperature on electrochemical performance. Temperature plays a vital role in optimizing LDH synthesis to enhance oxygen evolution reaction (OER) efficiency. The optimal temperature yielded a well-defined morphology with balanced crystallinity, leading to more active sites and improved charge transfer. Electrochemical tests indicated that the NiRu-LDH sample prepared at 50 °C (NiRu-LDH-50) required only 280 mV overpotential versus the reversible hydrogen electrode to achieve 10 mA/cm2 and exhibited a low Tafel slope of 52 mV/dec, demonstrating excellent catalytic kinetics. This study presents the synthesis of NiRu-LDH via coprecipitation and emphasizes how reaction temperature influences LDH structural properties and OER performance.

SUBMITTER: Argaw E 

PROVIDER: S-EPMC12917784 | biostudies-literature | 2026 Feb

REPOSITORIES: biostudies-literature

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Synthesis of NiRu-Layered Double Hydroxide for Enhanced Oxygen Evolution Reaction.

Argaw Eden E   Kc Binod Raj BR   Bastakoti Bishnu Prasad BP  

ACS omega 20260131 6


Nickel-ruthenium layered double hydroxide (NiRu-LDH) was synthesized by coprecipitation using formamide as both solvent and intercalant. The synthesis was performed at various temperatures to study the impact of temperature on electrochemical performance. Temperature plays a vital role in optimizing LDH synthesis to enhance oxygen evolution reaction (OER) efficiency. The optimal temperature yielded a well-defined morphology with balanced crystallinity, leading to more active sites and improved c  ...[more]

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