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Angstrom-sized tungsten carbide promoted platinum electrocatalyst for effective oxygen reduction reaction and resource saving

机译:埃大小的碳化钨促进的铂电催化剂可有效进行氧还原反应并节省资源

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摘要

Angstrom-sized tungsten carbide dots (WCdot), WC rods (WCrod) and 10 nm-sized WC particles (WCnano) are synthesized and used as platinum (Pt) electrocatalyst supports for efficient oxygen reduction reaction (ORR). The concentration of the tungsten source and formula structure of the carbon source (ion-exchange resin) control the size and shape of the WC materials. The angstrom-sized WCrod promoted Pt electrocatalyst (Pt/WCrod) shows slightly higher activity than the 10 nm-sized WCnano promoted electrocatalyst (Pt/WCnano), although the WCrod costs only one tenth the W amount of the WCnano, indicating resource saving. In addition, the Pt/WCrod shows higher ORR efficiency and stabilization than the commercial Pt/C. The electron transfer from WC to Pt is believed to account for the excellent performances of the Pt/WC. The significance of the work is that less WC and less Pt can be used to achieve the same or higher ORR performances, and the synthesis method can also be used to synthesize other angstrom-sized materials.
机译:合成了埃大小的碳化钨点(WCdot),WC棒(WCrod)和10 nm大小的WC颗粒(WCnano),并用作有效进行氧还原反应(ORR)的铂(Pt)电催化剂载体。钨源的浓度和碳源(离子交换树脂)的分子式结构控制着WC材料的尺寸和形状。埃大小的WCrod促进的Pt电催化剂(Pt / WCrod)的活性略高于10 nm大小的WCnano促进的电催化剂(Pt / WCnano),尽管WCrod的成本仅为WCnano的W量的十分之一,这表明节省了资源。另外,Pt / WCrod比商用Pt / C表现出更高的ORR效率和稳定性。据信,从WC到Pt的电子转移是Pt / WC优异性能的原因。这项工作的意义在于,可以使用更少的WC和更少的Pt来实现相同或更高的ORR性能,并且该合成方法还可以用于合成其他埃大小的材料。

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