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Preparation of methanol oxidation electrocatalysts: ruthenium deposition on carbon-supported platinum nanoparticles

机译:甲醇氧化电催化剂的制备:碳载铂纳米粒子上的钌沉积

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Methanol oxidation electrocatalysts were prepared from Ru electrochemical or spontaneous deposition on commercial-grade carbon-supported Pt nanoparticles (Pt-Vulcan XC72, E-TEK). The resulting Ru coverage was estimated by cyclic voltammetry in supporting electrolyte. The maximum electrocatalytic activity for methanol oxidation at room temperature was observed at lower Ru coverage for spontaneous deposition than for electrodeposition; theta(Ru) similar to 10% vs similar to20%, respectively. On the other hand, higher current densities for methanol oxidation were obtained in the case of electrodeposited Ru. These two results were related to the presence of non-reducible ruthenium oxides in the spontaneous deposit. The present work provides evidence that (i) efficient DMFC electrocatalysts can be achieved by Ru deposition on Pt nanoparticles, and (ii) formation of a PtRu alloy is not a required condition for effective methanol electrooxidation. [References: 45]
机译:甲醇氧化电催化剂是通过Ru电化学或自发沉积在商业级碳载Pt纳米颗粒(Pt-Vulcan XC72,E-TEK)上制备的。通过循环伏安法估算支持电解质中的最终Ru覆盖率。在自发沉积的Ru覆盖率低于电沉积的Ru覆盖率下,观察到了室温下甲醇氧化的最大电催化活性。 theta(Ru)分别类似于10%和20%。另一方面,在电沉积Ru的情况下,获得了更高的甲醇氧化电流密度。这两个结果与自发沉积物中不可还原的氧化钌的存在有关。本工作提供了证据:(i)有效的DMFC电催化剂可通过Ru在Pt纳米颗粒上的沉积来实现,并且(ii)PtRu合金的形成不是有效甲醇电氧化的必要条件。 [参考:45]

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