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首页> 外文期刊>Journal of Materials Research >Pt-Pd catalytic nanoflowers: Synthesis, characterization, and the activity toward electrochemical oxygen reduction
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Pt-Pd catalytic nanoflowers: Synthesis, characterization, and the activity toward electrochemical oxygen reduction

机译:Pt-Pd催化纳米花:合成,表征和对电化学氧还原的活性

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摘要

This work aims to synthesize PtPd catalytic clusters and to study the effect of the particle size, the curvature and possible alloying on the catalytic activity for oxygen reduction reaction, electrochemical stability, the mass-transfer of redox active species toward catalytic sites and the electro-kinetic of the oxygen reduction reaction (ORR) process. The curvature and the chemical composition of the catalyst surface significantly influence the electrochemically active surface area and catalytic activity toward oxygen reduction, regardless the particle size. The best catalytic activity was accomplished for 45 nm clusters due to possible alloying that enhance the O_2 adsorption and dissociation. The complementary impedance studies demonstrated that 45 nm cluster has also the shortest effective diffusion length and the highest reaction rate constant among all morphologies, indicating on superior reactant transport to the catalytic sites. In addition, the 45 nm clusters showed improved electrochemical stability that is believed to be the combined effect of alloying and the compactness of the structure.
机译:这项工作旨在合成PtPd催化簇,并研究粒径,曲率和可能的合金化对氧还原反应的催化活性,电化学稳定性,氧化还原活性物质向催化部位的传质以及电催化作用的影响。氧还原反应(ORR)过程的动力学。催化剂表面的曲率和化学组成显着影响电化学活性的表面积和对氧还原的催化活性,而与粒径无关。由于可能的合金化增强了O_2的吸附和解离,因此对于45 nm簇而言,实现了最佳的催化活性。互补阻抗研究表明,在所有形态中,45 nm团簇还具有最短的有效扩散长度和最高的反应速率常数,表明反应物向催化位点的转运更高。另外,45 nm团簇显示出改善的电化学稳定性,这被认为是合金化和结构紧凑的综合作用。

著录项

  • 来源
    《Journal of Materials Research》 |2015年第15期|2327-2339|共13页
  • 作者单位

    Department of Chemical and Earth Sciences, Institute of Organic and Macromolecular Chemistry (IOMC), Friedrich-Schiller University, 07743 Jena, Germany;

    Department of Physics, Institute of Metallic Materials, Friedrich-Schiller University, 07743 Jena, Germany;

    Department of Physics, Institute of Metallic Materials, Friedrich-Schiller University, 07743 Jena, Germany;

    Institute of Organic and Macromolecular Chemistry (IOMC), Friedrich-Schiller University, 07743 Jena, Germany;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);
  • 原文格式 PDF
  • 正文语种 eng
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