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首页> 外文期刊>Journal of Materials Chemistry, A. Materials for energy and sustainability >Template-free solvothermal preparation of ternary FeNi2S4 hollow balloons as RuO2-like efficient electrocatalysts for the oxygen evolution reaction with superior stability
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Template-free solvothermal preparation of ternary FeNi2S4 hollow balloons as RuO2-like efficient electrocatalysts for the oxygen evolution reaction with superior stability

机译:TRENINE FENI2S4中空气球的无模板溶液制备作为RUO2的高效电催化剂,用于氧气进化与稳定性的氧气变化反应

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摘要

Ternary transition metal sulfide hollow structures are promising materials for energy storage and conversion applications. However, their synthetic methods are rather complicated and time-consuming. In this work, for the first time, with FeNi _(2) S _(4) hollow balloons (FNSH) as the quintessential example, a template-free solvothermal method has been developed to synthesize ternary transition metal sulfide hollow balloons. The corresponding formation mechanism is deeply investigated, and the main factors affecting the formation of the hollow balloons are confirmed to be reaction time and temperature. FNSH/graphene aerogel (FNSH/GA) is further fabricated, which has been proven to be a highly efficient electrocatalyst for the oxygen evolution reaction (OER). The FNSH/GA exhibits excellent performance for the OER with a small overpotential of 273 mV at 10 mA cm ~(?2) in 1.0 M KOH, which is even superior to the typical RuO _(2) catalyst. Furthermore, the FNSH/GA maintains the excellent performance for the OER even after a 10 h chronoamperometric test. Moreover, the synthetic method is universal and can be widely extended to other ternary transition metal sulfide hollow balloons.
机译:三元过渡金属硫化物中空结构是有希望的用于能量存储和转换应用的材料。然而,它们的合成方法相当复杂和费时。在这项工作中,在第一次,用铁 - 镍合金_(2)S _(4)空心球(FNSH)作为典型的例子,一个无模板溶剂热法已经发展到合成三元过渡金属硫化物的中空球等。相应的形成机理进行了深入研究,并影响了中空微球的形成的主要因素,均证实反应时间和温度。 FNSH /石墨烯气凝胶(FNSH / GA)进一步制造,这已被证明是对析氧反应(OER)一种高效的电催化剂。所述FNSH / GA表现出的1.0M KOH,这甚至优于典型的RuO _(2)催化剂的OER优异的性能具有小的超电势273毫伏在10mA厘米〜(θ2)。此外,FNSH / GA甚至10 H计时试验后保持为OER的优良性能。此外,该合成方法是通用的,并且可以广泛地扩展到其它三元过渡金属硫化物的中空球等。

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    Institute of Special Materials and Technology Fudan University Shanghai China;

    Institute of Special Materials and Technology Fudan University Shanghai China;

    Institute of Special Materials and Technology Fudan University Shanghai China;

    Institute of Special Materials and Technology Fudan University Shanghai China;

    Institute of Special Materials and Technology Fudan University Shanghai China;

    Department of Materials Science and NanoEngineering Rice University;

    Department of Materials Science and NanoEngineering Rice University;

    Department of Materials Science and NanoEngineering Rice University;

    Institute of Special Materials and Technology Fudan University Shanghai China;

    Institute of Special Materials and Technology Fudan University Shanghai China;

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  • 正文语种 eng
  • 中图分类 工程材料学;
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