Department of Chemistry, University of Pretoria, NW-1 Building, Pretoria 0002, South Africa.
Langmuir. 2010 Jan 5;26(1):570-80. doi: 10.1021/la902219t.
An electrochemical synthesis of multilayered bimetallic Ru|Pt nanoclusters, supported on glassy carbon, is reported for the first time. The novel nanoclusters were synthesized via surface-limited redox-replacement reactions involving sacrificial Cu, deposited prior to the formation of each individual noble metal layer, in a sequential fashion. It has been shown that the Cu adlayers control the morphology and electrochemical properties of the resultant nanostructures. Sequentially deposited Ru|Pt nanoclusters exhibited superior electrocatalytic activity (when compared to equivalent monometallic Pt and an alloy-type codeposited Pt-Ru nanostructures) with respect to methanol electrooxidation in an acidic medium. Moreover, it has been established that the electrochemical process taking place at the Ru|Pt nanoclusters followed the bifunctional mechanism. Electrokinetic studies of the oxygen reduction reaction (ORR) were also performed. Analysis of hydrodynamic linear sweep voltammetric experiments, performed at various flow rates on oxygen-saturated acidic medium, revealed that the Pt and Ru|Pt nanoclusters exhibited direct four- and two-electron ORR pathways, respectively. A specially designed electrochemical flow-cell was used for automated sequential electrodeposition of the multilayered nanoclusters of predefined composition and electrochemical and electrocatalytic investigations.
首次报道了在玻璃碳上负载的多层双金属 Ru|Pt 纳米团簇的电化学合成。通过涉及牺牲 Cu 的表面限制氧化还原取代反应,以顺序方式合成了新型纳米团簇,Cu 在前一层贵金属形成之前沉积。已经表明,Cu 吸附加层控制了所得纳米结构的形态和电化学性质。与等效的单金属 Pt 和合金型共沉积 Pt-Ru 纳米结构相比,顺序沉积的 Ru|Pt 纳米团簇在酸性介质中对甲醇电氧化表现出更高的电催化活性。此外,已经确定在 Ru|Pt 纳米团簇上发生的电化学过程遵循双功能机制。还进行了氧还原反应 (ORR) 的电动研究。在各种流速下在氧气饱和的酸性介质中进行的动力学线性扫描伏安实验分析表明,Pt 和 Ru|Pt 纳米团簇分别表现出直接的四电子和两电子 ORR 途径。专门设计的电化学流动池用于自动顺序电沉积具有预定组成的多层纳米团簇,并进行电化学和电催化研究。