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首页> 外文期刊>Electrochimica Acta >Micelle-template synthesis of a 3D porous FeNi alloy and nitrogen-codoped carbon material as a bifunctional oxygen electrocatalyst
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Micelle-template synthesis of a 3D porous FeNi alloy and nitrogen-codoped carbon material as a bifunctional oxygen electrocatalyst

机译:胶束模板3D多孔Feni合金和氮编码碳材料作为双官能氧电催化剂的合成

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The sluggish kinetics of oxygen reduction reaction and oxygen evolution reaction (ORR/OER) are the key scientific issues that need to be addressed for the application of renewable energy technologies. Rational coupling transition metal with porous heteroatom-doped carbon is extensively investigated as an efficient strategy to achieve high performance ORR/OER nonprecious metal electocatalysts. In this study, a FeNi alloy coated with N-doped carbon material (namely FeNi/NC) was designed by using triblock copolymer Pluronic F127 as a surfactant co-assembly with g-C3N4. This strategy enabled FeNi/NC possessing a high BET surface area in terms of three-dimensional hierarchical porous structure together with abundant defect sites. The optimized FeNi/NC catalyst displays an excellent oxygen electrode electro-catalytic activity with a potential gap Delta E of 0.77 V in alkaline media which substantially outperformed benchmark Pt/C + RuO2 (Delta E = 0.80 V). Furthermore, it shows almost no decay after long-time cycling tests for ORR/OER. The excellent catalytic performance along with the low cost for FeNi/NC catalyst makes it possible to commercialize the renewable energy devices. (c) 2019 Elsevier Ltd. All rights reserved.
机译:氧还原反应和氧气进化反应(ORR / OER)的缓慢动力学是需要解决可再生能源技术的关键科学问题。广泛研究了具有多孔杂原子掺杂碳的合理偶联过渡金属作为实现高性能ORR / OER非匮乏金属Electocatalss的有效策略。在该研究中,通过使用三嵌段共聚物Pluronic F127作为具有G-C3N4的表面活性剂共组装,设计了涂有N掺杂碳材料(即FENI / NC)的FENI合金。该策略使FENI / NC在三维层级多孔结构方面具有高BET表面积,与丰富的缺陷位点一起。优化的FENI / NC催化剂在碱性介质中显示出优异的氧电极电催化活性,其潜在的间隙DELTA E为0.77V,其基本上优于基本上表现出的基准PT / C + RuO2(Delta E = 0.80V)。此外,它显示了ORR / OER的长时间循环测试后几乎没有衰减。优异的催化性能以及FENI / NC催化剂的低成本使得可以将可再生能量装置商业化。 (c)2019 Elsevier Ltd.保留所有权利。

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