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首页> 外文期刊>Nano Energy >Excavated octahedral Pt-Co alloy nanocrystals built with ultrathin nanosheets as superior multifunctional electrocatalysts for energy conversion applications
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Excavated octahedral Pt-Co alloy nanocrystals built with ultrathin nanosheets as superior multifunctional electrocatalysts for energy conversion applications

机译:挖掘过八面体PT-Co合金纳米晶体,用超薄纳米片作为高级多功能电催化剂,用于能量转换应用

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摘要

Abstract Pt-Co alloy is thought to be the best potential catalyst toward many electrocatalytic energy conversion reactions among various bimetallic alloys. To optimize the performance and reduce the usage of noble metal Pt, both the mass and surface contribution should be considered, which requires Pt-Co alloy nanocrystals (NCs) to possess large surface area and expose specific facets. Unfortunately, these requirements can hardly be met simultaneously for the NCs with normal convex polyhedral shapes. In this work, a simple cetyltrimethylammonium bromide-assisted method is proposed to controllably synthesize Pt-Co alloy NCs with a unique excavated octahedral shape. The excavated octahedral Pt-Co alloy NCs is intrinsically built with mutually perpendicular interlaced ultrathin PtCo nanosheets bound with {100} facets that are not the thermodynamically most stable for face-centered cubic metals. The electrochemically surface area of the unique excavated octahedral PtCo alloy NCs is determined to be 23.3m2 g?1 Pt, which is significantly larger than that of the normal octahedral Pt2Co alloy NCs with the same size (11.4m2 g?1 Pt). Owing to the combination of large surface area and high active {100} facets, the excavated octahedral PtCo NCs display extraordinary catalytic activity and durability towards hydrogen evolution reaction in alkaline en
机译:<![cdata [ 抽象 Pt-Co合金被认为是各种双金属合金中许多电催化能量转化反应的最佳潜在催化剂。为了优化性能并减少贵金属PT的使用,应考虑质量和表面贡献,这需要PT-CO合金纳米晶体(NCS)具有大表面积并暴露特定的刻面。遗憾的是,对于具有正常凸多面体形状的NC,几乎不能同时满足这些要求。在这项工作中,提出了一种简单的甲基三甲基溴化铵辅助方法,可控制用独特的挖掘八面体形状合成Pt-Co合金NCS。挖掘的八面体Pt-Co合金NCS本质上由与{100}小平面结合的相互垂直的相互垂直的超薄PTCO纳米晶片,该方面不是对面为中心的立方金属的热力学上最稳定的。独特的挖掘八面体PTCO合金NCS的电化学表面积确定为23.3 m 2 g ?1 pt ,它明显大于此正常八面体PT 2 CO合金NCS具有相同尺寸(11.4 M 2 g ?1 pt )。由于大表面积和高活性{100}小平面的组合,挖掘的八面体PTCO NCS显示出非凡的催化活性和耐碱性EN中的氢进化反应的耐久性

著录项

  • 来源
    《Nano Energy》 |2017年第2017期|共8页
  • 作者单位

    State Key Laboratory of Physical Chemistry of Solid Surfaces Collaborative Innovation Center of Chemistry for Energy Materials Department of Chemistry College of Chemistry and Chemical Engineering Xiamen University;

    State Key Laboratory of Physical Chemistry of Solid Surfaces Collaborative Innovation Center of Chemistry for Energy Materials Department of Chemistry College of Chemistry and Chemical Engineering Xiamen University;

    State Key Laboratory of Physical Chemistry of Solid Surfaces Collaborative Innovation Center of Chemistry for Energy Materials Department of Chemistry College of Chemistry and Chemical Engineering Xiamen University;

    State Key Laboratory of Physical Chemistry of Solid Surfaces Collaborative Innovation Center of Chemistry for Energy Materials Department of Chemistry College of Chemistry and Chemical Engineering Xiamen University;

    State Key Laboratory of Physical Chemistry of Solid Surfaces Collaborative Innovation Center of Chemistry for Energy Materials Department of Chemistry College of Chemistry and Chemical Engineering Xiamen University;

    State Key Laboratory of Physical Chemistry of Solid Surfaces Collaborative Innovation Center of Chemistry for Energy Materials Department of Chemistry College of Chemistry and Chemical Engineering Xiamen University;

    State Key Laboratory of Physical Chemistry of Solid Surfaces Collaborative Innovation Center of Chemistry for Energy Materials Department of Chemistry College of Chemistry and Chemical Engineering Xiamen University;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 能源与动力工程;
  • 关键词

    Platinum-cobalt alloy; Nanosheets; Excavated polyhedra; Electrocatalysts; Energy conversion;

    机译:铂 - 钴合金;纳米蛋白酶;挖掘多面体;电催化剂;能量转换;

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