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首页> 外文期刊>Journal of solid state electrochemistry >Enhancement of activity of PtRh nanoparticles towards oxidation of ethanol through modification with molybdenum oxide or tungsten oxide
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Enhancement of activity of PtRh nanoparticles towards oxidation of ethanol through modification with molybdenum oxide or tungsten oxide

机译:通过氧化钼或氧化钨改性提高PtRh纳米颗粒对乙醇氧化的活性

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摘要

Electrocatalytic systems utilizing carbon (Vulcan)-supported PtRh nanoparticles (PtRh/Vulcan) admixed with either molybdenum oxide or tungsten oxide were tested and compared during electrooxidation of ethanol. The systems' performance was diagnosed using electrochemical techniques such as voltammetry and chronoamperometry. The proposed electrocatalytic materials were also characterized with X-ray diffraction (XRD), transmission and scanning electron microscopies (TEM and SEM), as well as SEM-coupled energy dispersive X-ray spectroscopy (SEM-EDX). For both systems containing molybdenum and tungsten oxides, enhancements in catalytic activities (relative to the behavior observed at bare PtRh/Vulcan nanoparticles) were found during ethanol electrooxidation at room temperature (22 °C). Further, it was from chronoamperometric current (density)-time responses that anodic electrocatalytic currents measured at 0.3 V (vs. RHE) were more than 20% higher in the case of the MoO _3- containing PtRh/Vulcan system relative to that utilizing WO _3. The diagnostic "CO-stripping" experiments were consistent with the view that addition of molybdenum oxide or tungsten oxide to PtRh/Vulcan tended to shift potential for the oxidation of inhibiting CO-adsorbate ca. 80 or 40 mV towards less negative values in comparison to the analogous but oxide-free system. The fact that carbon (Vulcan)-supported PtRu nanoparticles exhibited higher electrocatalytic reactivity observed phenomena may be attributed to specific interactions between noble metal centers and the oxides in addition to chemical reactivity of metal oxo groups in the vicinity of PtRh/Vulcan at the electrocatalytic interface.
机译:在乙醇的电氧化过程中,测试并比较了使用碳(Vulcan)负载的PtRh纳米颗粒(PtRh / Vulcan)与氧化钼或氧化钨混合的电催化系统。使用电化学技术(例如伏安法和计时电流法)诊断了系统的性能。拟议的电催化材料还通过X射线衍射(XRD),透射和扫描电子显微镜(TEM和SEM)以及SEM耦合能量色散X射线光谱(SEM-EDX)进行了表征。对于包含钼和钨的氧化物的两个系统,在室温(22°C)下乙醇电氧化过程中均发现催化活性增强(相对于裸露的PtRh / Vulcan纳米颗粒观察到的行为)。此外,根据计时电流(密度)-时间响应,在含MoO_3的PtRh / Vulcan系统的情况下,在0.3 V(vs. RHE)下测得的阳极电催化电流比使用WO的阳极电催化电流高20%以上。 _3。诊断性的“ CO汽提”实验与以下观点一致:将氧化钼或氧化钨添加到PtRh / Vulcan中往往会转移抑制CO吸附的氧化电位。与类似但无氧化物的系统相比,负值低80-40 mV。碳(Vulcan)负载的PtRu纳米颗粒表现出更高的电催化反应性观察到的现象的事实可能归因于贵金属中心与氧化物之间的特定相互作用以及PtRh / Vulcan附近的金属氧代基团在电催化界面处的化学反应。

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