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首页> 外文期刊>ChemCatChem >Boosting Stability and Activity of Oxygen Evolution Catalyst in Acidic Medium: Bimetallic Ir-Fe Oxides on Reduced Graphene Oxide Prepared through Ultrasonic Spray Pyrolysis
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Boosting Stability and Activity of Oxygen Evolution Catalyst in Acidic Medium: Bimetallic Ir-Fe Oxides on Reduced Graphene Oxide Prepared through Ultrasonic Spray Pyrolysis

机译:促进酸性介质中氧气逸出催化剂的稳定性和活性:通过超声波喷雾热解制的石墨烯氧化物上的双金属IR-Fe氧化物

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摘要

Electrolysis of water in acidic media generally requires noble metals (oxides) to enhance the catalyst activity and durability in the oxygen evolution reaction (OER). Bimetallic Ir-Fe supported on reduced graphene oxide (IFG) is prepared by ultrasonic spray pyrolysis, followed by acid and/or heat treatment. Physical and electrochemical methods are used to elucidate the effect of the physical and chemical properties of the IFG catalysts modified by spray pyrolysis and post treatment on the OER activity and stability under harshly oxidizing conditions in 0.1 M HClO4. The IFG-AHT catalyst synthesized via ultrasonic pyrolysis followed by acid and heat treatment exhibits superior OER activity among the IFG catalysts. The mass activity was two-fold higher and the stability is superior to that of the commercially available Ir catalyst, indicating that the metal (oxide) dissolution rate and the interaction between Ir and the hybrid support affect the cost and lifetime of OER catalysts.
机译:在酸性介质中电解通常需要贵金属(氧化物)以增强氧气进化反应中的催化剂活性和耐久性。 支持的石墨烯(IFG)上负载的双金属IR-Fe通过超声波喷雾热解制备,然后是酸和/或热处理制备。 物理和电化学方法用于阐明通过喷雾热解和后处理改性的IFG催化剂的物理和化学性质的影响,并在0.1M HClO4中苛性氧化条件下的oer活性和稳定性。 通过超声波热解,随后是酸和热处理合成的IFG-AHT催化剂在IFG催化剂中表现出优异的OER活性。 质量活性较高,稳定性优于市售红外催化剂的稳定性,表明金属(氧化物)溶解速率和IR和杂交载体之间的相互作用影响了伊尔催化剂的成本和寿命。

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