首页> 外文期刊>Applied Catalysis, B. Environmental: An International Journal Devoted to Catalytic Science and Its Applications >Metallomacrocyclic carbon complex: A study of bifunctional electrocatalytic activity for oxygen reduction and oxygen evolution reactions and their lithium-oxygen battery applications
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Metallomacrocyclic carbon complex: A study of bifunctional electrocatalytic activity for oxygen reduction and oxygen evolution reactions and their lithium-oxygen battery applications

机译:金属茂环碳复合物:对氧气减少和氧气进化反应的双官能电催化活性及其锂 - 氧电池应用研究

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摘要

A metallophthalocyanine carbon complex is designed by a simple approach to achieve superior, bifunctional catalytic activity. A simple and cost-effective technique is utilized to prepare carbon iron phthalocyanine composites. Furthermore, to investigate ball milling effects, iron phthalocyanine is ball milled, which is used to prepare the carbon ball-milled iron phthalocyanine composites. All the prepared composites exhibit better catalytic activity in both oxygen reduction and oxygen evolution reactions than Pt/C, indicating carbon support significantly improves the stability, conductivity, and surface properties of iron phthalocyanine. The ball-milling improves specific surface area, which in turn enhances the oxygen evolution reaction activity of the composites. When the carbon-iron phthalocyanine composites were applied to an air-cathode catalyst in a lithium-oxygen battery, high reversibility and low over-potential were attained. Among all the synthesized catalysts, the reduced graphene oxide_ball-milled iron phthalocyanine composite exhibits superior bifunctional electrocatalytic activity with high reversibility (92%) and low over-potential (0.7 V) due to enhanced surface properties.
机译:金属酞菁碳络合物是通过一种简单的方法来实现优异的双官能催化活性。利用简单且经济高效的技术来制备碳铁酞菁复合材料。此外,为了研究球铣削效应,铁酞菁是球磨的,用于制备碳球磨铁酞菁复合材料。所有制备的复合材料在氧气还原和氧气演化反应中表现出更好的催化活性,而不是Pt / C,表明碳载体显着提高了铁酞菁的稳定性,电导率和表面性质。滚珠研磨改善了比表面积,其又提高了复合材料的氧气逸出反应活性。当将碳 - 铁酞菁复合材料施加到锂 - 氧气电池中的空气阴极催化剂中时,获得高可逆性和低潜力。在所有合成的催化剂中,还原的石墨烯氧化铁 - 碾磨的铁酞菁复合材料具有高可逆性(92%)和由于增强的表面性质而具有高可逆性(92%)和低电位(0.7V)的高级双常功能电催化活性。

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