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脉冲梯度电沉积制备电解槽超低铱载量析氧电极

宋鑫 高家炘 裴普成 任棚 王喆正

清华大学学报(自然科学版)2026,Vol.66Issue(4):818-831,14.
清华大学学报(自然科学版)2026,Vol.66Issue(4):818-831,14.DOI:10.16511/j.cnki.qhdxxb.2025.22.042

脉冲梯度电沉积制备电解槽超低铱载量析氧电极

Ultralow-iridium-loading oxygen evolution electrodes for proton exchange membrane water electrolyzers prepared by pulse-gradient electrodeposition

宋鑫 1高家炘 1裴普成 1任棚 1王喆正1

作者信息

  • 1. 清华大学车辆与运载学院,智能绿色车辆与交通全国重点实验室,北京 100084
  • 折叠

摘要

Abstract

[Objective]The wide application of proton exchange membrane(PEM)electrolyzers is limited by their high capital costs,which are primarily due to the extensive use of precious metal iridium.However,reducing iridium loading still poses challenges related to the efficiency and stability of PEM electrolyzers.Although the catalysts prepared using manganese dioxide loaded with iridium have achieved a high iridium mass activity,the design and preparation of iridium-manganese oxide catalyst electrodes for PEM electrolysis continue to face other challenges,including catalyst layer(CL)dead zones,reduced three-phase interfaces,and poor stability.This study reports an oxygen evolution reaction(OER)electrode with an ultralow iridium load dispersed by manganese dioxide carriers.The highly dispersed iridium is anchored on the surface of manganese dioxide with a high electrochemical surface area and low ohmic resistance,thereby achieving high performance and stability.[Methods]Manganese dioxide electrodes prepared by pulsed electrodeposition(PED),continuous electrodeposition(CED),and pulse-gradient electrodeposition(PGED)were fabricated on titanium felt,followed by reaction with iridium precursor solutions for iridium loading to yield PED-IrMnO2/porous transport layer(PTL),CED-IrMnO2/PTL,and PGED-IrMnO2/PTL,respectively.The physical properties of the samples were characterized by scanning electron microscopy(SEM),high-resolution transmission electron microscopy(HR-TEM),X-ray diffraction(XRD),Brunauer-Emmett-Teller(BET),and X-ray photoelectron spectroscopy(XPS).The electrochemical performance of the samples was evaluated in a three-electrode system and a PEM electrolyzer.Linear sweep voltammetry,cyclic voltammetry,polarization curves,and electrochemical impedance spectroscopy(EIS)were also analyzed.[Results]SEM results showed that PED increased the MnO2 particle size and decreased the number of particles per unit area.The BET values were the lowest in the PED sample,followed by the PGED sample,and the highest in the CED sample at 44.78 m2·g-1.SEM analysis of the PED sample revealed that a small duty cycle resulted in uniform MnO2 growth,indicating the presence of many contact sites with the PTL.Thus,the PED sample had the lowest resistance.Compared with the CED and PED samples,the PGED sample had reduced resistance and increased specific surface area,respectively.XRD and TEM results revealed the(131)crystal plane corresponding to γ-MnO2.XPS results showed that PGED-Ir MnO2/PTL had the highest Ir valence state of+5.73,indicating its high OER activity.In the three-electrode system,PGED-Ir MnO2/PTL exhibited the highest iridium mass activity,reaching 112.32 A·g-1 at 1.53 V versus reversible hydrogen electrode(RHE),which was 4.41 times that of IrO2/PTL.The stability test results showed that the potential change of PGED-IrMnO2/PTL was negligible throughout a 100 h duration test in 0.5 mol·L-1 H2SO4.In the PEM electrolyzer,the PGED sample exhibited the best performance with a voltage of only 1.859 V at 2 A·cm-2 and the lowest Tafel slope of 74.3 mV·dec-1.EIS analysis indicated that the improved OER performance of the PGED sample was due to a balance between ohmic losses and charge transfer losses.[Conclusions]This study develops a preparation technique for 3D gradient-ordered OER electrodes for PEM electrolyzers,reducing iridium usage to 1%of commercial levels while maintaining high performance.The prepared gradient-ordered OER electrodes demonstrates enhanced electron conduction sites between the CL and the PTL.The gradient design increases the specific surface area,allowing PGED-IrMnO2/PTL to achieve an iridium mass activity of up to 1.1×105 A·g-1 in the PEM electrolyzer.These findings contribute to the development of low-cost,high-performance,and stable ultralow-iridium-loading OER electrodes,thereby advancing the terawatt-scale application of PEM electrolyzers.

关键词

质子交换膜水电解/铱锰氧化物/析氧反应/超低铱载量

Key words

proton exchange membrane water electrolysis/iridium-manganese oxide electrodes/oxygen evolution reaction/ultralow iridium loading

分类

化学化工

引用本文复制引用

宋鑫,高家炘,裴普成,任棚,王喆正..脉冲梯度电沉积制备电解槽超低铱载量析氧电极[J].清华大学学报(自然科学版),2026,66(4):818-831,14.

清华大学学报(自然科学版)

1000-0054

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