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Pt–Pd alloy nanoparticle-decorated carbon nanotubes: a durable and methanol tolerant oxygen reduction electrocatalyst

催化作用 电催化剂 材料科学 甲醇 纳米颗粒 合金 化学工程 X射线光电子能谱 碳纳米管 炭黑 金属 碳纤维 纳米技术 复合材料 电极 电化学 化学 复合数 冶金 有机化学 物理化学 天然橡胶 工程类
作者
Sourov Ghosh,Ranjan K. Sahu,C. Retna Raj
出处
期刊:Nanotechnology [IOP Publishing]
卷期号:23 (38): 385602-385602 被引量:54
标识
DOI:10.1088/0957-4484/23/38/385602
摘要

We describe the decoration of multiwalled carbon nanotubes (MCNTs) with Pt–Pd alloy nanoelectrocatalysts of three different compositions and their electrocatalytic performance toward the oxygen reduction reaction (ORR). The decoration of the MCNTs involves polymer-assisted impregnation of metal precursors and and the subsequent reduction of the impregnated precursors by a modified polyol route. The composition of the catalyst was controlled by tuning the molar ratio of the precursors during their impregnation. Electron probe microscopic analysis shows that the catalysts have compositions of Pt46Pd54, Pt64Pd36 and Pt28Pd72. The Pt46Pd54 and Pt64Pd36 catalysts have truncated octahedral and icosahedral shapes with a size ranging from 8 to 10 nm. On the other hand, the catalyst of Pt28Pd72 composition has a spherical/quasispherical shape with a size distribution of 1–2 nm. The XPS measurement confirms the signature of metallic Pt and Pd. The Pt46Pd54 catalyst has a pronounced electrocatalytic activity toward the ORR with a specific and mass activity of 378 and , respectively at 0.8 V. Moreover, the Pt46Pd54 nanoelectrocatalyst is highly durable and it retains its initial catalytic activity even after 1000 extensive cycles. Interestingly, this catalyst has a very high tolerance toward methanol and it does not favor the oxidation of methanol in the potential window of 0.1–1.4 V. The electrocatalytic activity of the alloy electrocatalyst is compared with commercially available Pt black and MCNT-supported spherical Pt nanoparticles. The catalytic activity of the Pt46Pd54 nanoelectrocatalyst is higher than the other catalysts. The Pt46Pd54 catalyst outperforms the electrocatalytic activity of all other catalysts.

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