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Oxygen and hydrogen evolution reactions on Ru, RuO2, Ir, and IrO2 thin film electrodes in acidic and alkaline electrolytes: A comparative study on activity and stability

机译:酸性和碱性电解质中Ru,RuO2,Ir和IrO2薄膜电极上的氧气和氢气逸出反应:活性和稳定性的比较研究

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Metallic iridium and ruthenium as well as their oxides are among the most active oxygen evolution (OER) electrocatalysts in acidic media, and are also of interest for the catalysis of the hydrogen evolution (HER). The stability of these materials under different operating conditions is, however, still not fully understood. In the current work, activity and stability of well-defined Ru, RuO2, Ir, and IrO2 thin film electrodes are evaluated in acidic and alkaline electrolytes using an electrochemical scanning flow cell (SFC) connected to an inductively coupled plasma mass spectrometer (ICP-MS). Identical experimental protocols are intentionally employed for all electrodes and electrolytes, to obtain unambiguous and comparable information on intrinsic activity and stability of the electrodes. It is found that independent of the electrolyte, OER activity decreases as Ru >Ir approximate to RuO2 >IrO2, while dissolution increases as IrO2 RuO2< Ir Ru. Moreover, dissolution of these metals in both solutions is 2-3 orders of magnitude higher compared to their respective oxides, and dissolution is generally more intense in alkaline solutions. Similarly to the OER, metallic electrodes are more active catalysts for HER. They, however, suffer from dissolution during native oxide reduction, while Ir02 and Ru02 do not exhibit significant dissolution. The obtained results on activity and stability of the electrodes are discussed in light of their potential applications, i.e. water electrolysers or fuel cells. (C) 2015 Elsevier B.V. All rights reserved.
机译:金属铱和钌以及它们的氧化物是酸性介质中最活跃的氧气释放(OER)电催化剂,并且对于催化氢气释放(HER)也很重要。然而,仍未完全了解这些材料在不同操作条件下的稳定性。在当前工作中,使用连接到电感耦合等离子体质谱仪(ICP-MS)的电化学扫描流通池(SFC)在酸性和碱性电解液中评估定义明确的Ru,RuO2,Ir和IrO2薄膜电极的活性和稳定性。多发性硬化症)。有意对所有电极和电解质采用相同的实验规程,以获得关于电极的固有活性和稳定性的明确且可比的信息。发现独立于电解质,当Ru> Ir近似于RuO2> IrO2时,OER活性降低,而当IrO2 RuO2

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