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Novel Pt-Ru nanoparticles formed by vapour deposition as efficient electrocatalyst for methanol oxidation, Part II. Electrocatalytic activity

机译:通过气相沉积形成的新型Pt-Ru纳米颗粒,作为甲醇氧化的有效电催化剂,第二部分。电催化活性

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The methods developed and described in paper-part I are employed to prepare nanometer size Pt-Ru particles on a Vulcan XC72R substrate with controlled metal loading. Transmission Electron Microscopy (TEM) confirmed uniform particles size (average diameter 2 nm) and homogeneous dispersion of the particles over the substrate. Energy Dispersive X-ray absorption (EDX) analysis confirmed the compositional homogeneity. The catalytic activity of these supported nanoparticles with regard to methanol electrooxidation is investigated using cyclic voltarnmetry (CV), chronoamperometry (CA) and CO-stripping voltammetry techniques at temperatures between 25 and 60℃. Such investigation concerns supported catalysts prepared with ca. 10 and 18 wt.% overall metal loading (Pt + Ru) onto the Vulcan XC72R substrate. Comparative testing of our catalysts and a commercial Pt-Ru/Vulcan reveals markedly superior activity for our catalysts. In fact, we observe for the latter a five-fold increase of the oxidation current as compared to a commercial Pt-Ru/Vulcan with equal metal loading. One of the reasons for the greater activity is found to be the very high dispersion of the metals over the substrate, i.e. the large surface area of the active phase. Other reasons are plausibly ascribable to the varied Pt/Ru composition and/or reduced presence of contaminants at the catalyst surface.
机译:本文第一部分中开发和描述的方法用于在Vulcan XC72R基板上以受控的金属负载量制备纳米尺寸的Pt-Ru颗粒。透射电子显微镜(TEM)证实了均匀的粒径(平均直径2nm)和颗粒在基底上的均匀分散。能量色散X射线吸收(EDX)分析证实了成分均匀性。利用循环伏安法(CV),计时安培法(CA)和CO溶出伏安法在温度为25至60℃的条件下研究了这些负载型纳米颗粒对甲醇电氧化的催化活性。这样的研究涉及用约10%的催化剂制备的载体催化剂。在Vulcan XC72R基板上的总金属负载量(Pt + Ru)为10和18 wt。%。对我们的催化剂和市售Pt-Ru / Vulcan进行的对比测试表明,我们的催化剂具有明显优越的活性。实际上,对于后者,我们观察到与具有相同金属负载的市售Pt-Ru / Vulcan相比,氧化电流增加了五倍。发现较高活性的原因之一是金属在基材上的非常高的分散性,即活性相的大表面积。其他原因可能归因于Pt / Ru组成的变化和/或催化剂表面污染物的减少。

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