Deciphering Interfacial Electronic Interactions Between Iridium Oxide and Ni-Based Supports for High-Current-Density Anion Exchange Membrane Water Electrolysis

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초록

Enhancing the oxygen evolution reaction (OER) performance of Ir-based catalysts while minimizing Ir usage is crucial for advancing anion exchange membrane water electrolyzers (AEMWEs). Herein, we present binder-free iridium oxide (IrO2)-Ni-based electrodes prepared via a liquid-phase synthesis, which directly anchors an ultralow quantity of IrO2 nanoparticles onto versatile Ni-based foams. This design enables systematic investigation of how Ni-based support chemistry modulates interfacial electronic interactions and thereby dictates catalytic performance. Electrochemical measurements reveal that IrO2 on nickel phosphide (Ni2P) exhibits the highest activity and durability, with a significantly low overpotential of 232 mV and stable operation over 400 h at 10 mA cm−2. Spectroscopic and density functional theory (DFT) analyses reveal that strong interfacial charge transfer between IrO2 and Ni2P enriches the electron density around Ir and downshifts the Ir d-band center, thereby optimizing the adsorption energetics of OER intermediates and accelerating the reaction kinetics. The binder-free configuration enhances mechanical integrity and mass transport, which enables high-current-density operation (3.1 A cm−2 at 2.0 Vcell) under practical AEMWE conditions. Thus, the Ni-based support material enables tuning of the interfacial electronic coupling and catalytic behavior of IrO2, thereby supporting the development of binder-free low Ir-loaded electrodes for cost-effective and durable AEMWEs.

키워드

Anion exchange membrane water electrolyzerBinder-free electrodeCatalyst-support interactionIridium oxideOxygen evolution reactionINITIO MOLECULAR-DYNAMICSOXYGEN EVOLUTIONHIGH-PERFORMANCEELECTROCATALYSTSCATALYSTSIRO2
제목
Deciphering Interfacial Electronic Interactions Between Iridium Oxide and Ni-Based Supports for High-Current-Density Anion Exchange Membrane Water Electrolysis
저자
Lee, YeongbinJang, SeohyeonHong, SeokjinJeong, SeoyeonKim, Ju YoungJeong, WooseokLee, HyeonseokKim, GyuhyeonSon, HyungbinAhn, Sang HyunNam, InhoHa, Don- Hyung
DOI
10.1002/smll.74025
발행일
2026-06
유형
Article; Early Access
저널명
Small

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