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首页> 外文期刊>International journal of hydrogen energy >Electrochemical performance of Pd and Au-Pd core-shell nanoparticles on surface tailored carbon black as catalyst support
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Electrochemical performance of Pd and Au-Pd core-shell nanoparticles on surface tailored carbon black as catalyst support

机译:Pd和Au-Pd核壳纳米粒子在表面定制的炭黑上作为催化剂载体的电化学性能

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摘要

The present work studies the influence of the surface chemistry of carbon supports on the electrochemical behaviour of Pd and Au—Pd core—shell (CS) nanoparticles. Vulcan XC-72R was chemically modified by different acid treatments, inducing changes in the volume of the mesopores and surface density of oxygenated species. The CS nanostructures featuring 19 nm Au cores and 10 nm Pd shells were synthesized by colloidal methods and subsequently incorporated to the carbons supports. Pd nanoparticles were prepared by impregnating a Pd precursor into the modified carbons followed by reduction with sodium borohydride. The use of different preparation methods allowed the independent study of the effect of the support on the morphology/distribution of the nanoparticles and on the reactivity of the nanoparticles, through their interaction with organic molecules. The electrocatalysts were characterised by XRD, EDX, Raman spectroscopy and contact angle measurements. CO and formic acid (HCOOH) electro-oxidation were studied using cyclic voltammetry and chronoamperometry. The effect of the carbon support on the electro-catalytic activity was highly dependent on the method of preparation. Pd nanoparticles obtained by impregnation showed higher HCOOH oxidation currents when supported on the highly oxidised Vulcan support. This is due to the generation of smaller particle sizes (2.3 nm) as a result of the high density of oxygenated functional groups. On the other hand, the CS nanostructures are significantly less active in highly oxidised Vulcan as a results of specific chemical interactions which may be related to the formation of oxides. The implication of these findings towards rationalising particle-substrate interactions are briefly discussed.
机译:本工作研究了碳载体表面化学性质对Pd和Au-Pd核-壳(CS)纳米粒子的电化学行为的影响。 Vulcan XC-72R通过不同的酸处理进行了化学修饰,从而引起中孔体积的变化和氧化物种的表面密度的变化。通过胶体方法合成了具有19 nm Au核和10 nm Pd壳的CS纳米结构,然后将其掺入碳载体中。通过将Pd前体浸渍到改性碳中,然后用硼氢化钠还原来制备Pd纳米颗粒。通过使用不同的制备方法,可以通过载体与有机分子的相互作用来独立研究载体对纳米颗粒的形态/分布以及纳米颗粒反应性的影响。通过XRD,EDX,拉曼光谱和接触角测量对电催化剂进行了表征。使用循环伏安法和计时电流法研究了CO和甲酸(HCOOH)的电氧化。碳载体对电催化活性的影响高度依赖于制备方法。当浸渍在高度氧化的Vulcan载体上时,通过浸渍获得的Pd纳米颗粒显示出更高的HCOOH氧化电流。这是由于由于氧化官能团的密度高而产生了较小的粒径(2.3 nm)。另一方面,由于可能与氧化物形成有关的特定化学相互作用,CS纳米结构在高度氧化的Vulcan中的活性明显较低。简要讨论了这些发现对合理化颗粒-底物相互作用的意义。

著录项

  • 来源
    《International journal of hydrogen energy》 |2012年第8期|p.7152-7160|共9页
  • 作者单位

    Instituto de Carboquimica (CSIC), Miguel Luesma Castan 4, 50018 Zaragoza, Spain;

    School of Chemistry, University of Bristol, Cantocks Close, Bristol, BS8 ITS, UK;

    School of Chemistry, University of Bristol, Cantocks Close, Bristol, BS8 ITS, UK;

    Instituto de Carboquimica (CSIC), Miguel Luesma Castan 4, 50018 Zaragoza, Spain;

    School of Chemistry, University of Bristol, Cantocks Close, Bristol, BS8 ITS, UK;

    Instituto de Carboquimica (CSIC), Miguel Luesma Castan 4, 50018 Zaragoza, Spain;

  • 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
  • 中图分类
  • 关键词

    surface chemistry; palladium; core-shell; formic acid oxidation;

    机译:表面化学钯;核 - 壳;甲酸氧化;

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