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首页> 外文期刊>Journal of Materials Chemistry, A. Materials for energy and sustainability >Pt-loaded Au@CeO2 core-shell nanocatalysts for improving methanol oxidation reaction activity
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Pt-loaded Au@CeO2 core-shell nanocatalysts for improving methanol oxidation reaction activity

机译:Pt加载的Au @ CeO2核 - 壳纳米催化剂,用于改善甲醇氧化反应活性

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摘要

Herein, we provide a facile hydrothermal process for ultralow Pt loading (3.84 wt%) on the porous surface of an Au@CeO2 core-shell nanocatalyst (CSNC) in order to improve the electrocatalytic property of bare Pt towards the methanol oxidation reaction (MOR). The Au@CeO2@Pt CSNC demonstrated a high BET surface area (88.10 m(2) g(-1)) and high numbers of catalytic surface active species (such as Pt-0, Ce3+ and oxygen vacancies). The corresponding electrode obtained by spraying the Au@CeO2@Pt CSNC onto the microporous layer (MPL) of carbon cloth (Au@CeO2@Pt/C) showed better electrocatalytic properties, such as high electrochemical surface area (ECSA - 80 m(2) g(-1)) and low charge transfer resistance (37 omega) than CeO2@Pt/C (52 m(2) g(-1) and 106 omega) and commercial Pt/C (44 m(2) g(-1) and 182 omega). Furthermore, the positive catalytic properties of the Au@CeO2@Pt/C electrode were investigated via MOR mass activity which at 1.36 A mg(Pt)(-1), was 1.5 and 2.0 times higher than those obtained from the CeO2@Pt/C (0.92 A mg(Pt)(-1)) and commercial Pt/C (0.67 A mg(Pt)(-1)) electrodes, respectively. Moreover, the Au@CeO2@Pt/C electrocatalyst also had good MOR durability and high CO tolerance. The electrocatalytic enhancement of the Au@CeO2@Pt CSNC could be the result of the electronic, bifunctional and synergistic effects between the Au, CeO2 and Pt components supported on the carbon cloth. Accordingly, these advantageous effects easily removed the adsorbed CO intermediate as the main poisoner on the surface of the Pt catalyst, and thereby significantly improved the overall MOR activity.
机译:在此,我们在Au @ CeO2核 - 壳纳米催化剂(CSNC)的多孔表面上为超级Pt加载(3.84wt%)提供了容易水热方法,以改善裸PT朝向甲醇氧化反应的电催化性能(Mor )。 AU @ CeO2 @ Pt CSNC证明了高BET表面积(88.10m(2)G(-1))和高催化表面活性物质(例如Pt-0,CE3 +和氧空位)。通过将AU @ CeO2 @ Pt CSNC喷涂到微孔层(MPL)的碳布(Au @ Ceo2 @ Pt / c)中获得的相应电极显示出更好的电催化性质,例如高电化学表面积(ECSA - 80米(2 )G(1))和低电荷转移电阻(37ω)比CeO2 @ Pt / C(52m(2)g(-1)和106ω)和商业Pt / C(44m(2)g( -1)和182欧米加)。此外,通过MOR质量活性研究了Au @ CeO 2 @ Pt / C电极的阳性催化性质,其在1.36A毫克(Pt)( - 1),比CeO2 @ Pt / Pt / C(0.92毫克(Pt)( - 1))和商用Pt / C(0.67A毫克(Pt)( - 1))电极。此外,AU @ CEO2 @ PT / C电催化也良好的MOR耐用性和高CO容差。 Au @ Ceo2 @ Pt CSNC的电催化增强可能是碳布中支持的AU,CEO2和PT部件之间的电子,双功能和协同效应的结果。因此,这些有益效果容易除去吸附的CO中间体作为PT催化剂表面上的主要中语,从而显着改善了整个MOR活动。

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