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氧化钒修饰的碳纳米管作为 Pt 纳米粒子甲醇电氧化反应的一种有前途的载体。

Vanadium oxide decorated carbon nanotubes as a promising support of Pt nanoparticles for methanol electro-oxidation reaction.

机构信息

Catalysis and Nanostructured Materials Research Laboratory, School of Chemical Engineering, University of Tehran, P.O. Box 11155/4563, Tehran, Iran.

出版信息

J Colloid Interface Sci. 2013 Mar 1;393:291-9. doi: 10.1016/j.jcis.2012.10.048. Epub 2012 Nov 10.

Abstract

VO(x)-MWCNTs nanocomposite was prepared via deposition-precipitation method followed by microwave treatment. Platinum nanoparticles were dispersed via polyol process over the nanocomposite support, and thus, prepared electro-catalyst was employed in methanol electro-oxidation reaction. The electro-catalysts were characterized by means of TGA, XRD, EDS, FESEM, TEM, and H(2)-TPR analysis. The electro-catalytic activity and stability of the electrodes toward methanol oxidation reaction in acidic medium were studied by using cyclic voltammetry (CV), CO-stripping, and electrochemical impedance spectroscopy (EIS) techniques. Compared to the Pt/MWCNTs, the Pt/VO(x)-MWCNTs electro-catalyst not only exhibits high electro-catalytic activity, but also shows very good stability during methanol electro-oxidation reaction. In addition, the presence of VO(x) in the composite support dramatically increases the electrochemical active surface area of platinum nanoparticles. The results of electrochemical impedance spectroscopy reveal that formation kinetics of adsorbed hydroxyl group on surface of the electro-catalysts is improved upon vanadium oxide addition to the support. This phenomenon is very helpful to facilitate oxidative removal of adsorbed CO group through bifunctional mechanism on Pt/VO(x)-MWCNTs.

摘要

VO(x)-MWCNTs 纳米复合材料通过沉积沉淀法制备,然后进行微波处理。铂纳米粒子通过多元醇工艺在纳米复合材料载体上分散,从而制备出用于甲醇电氧化反应的电催化剂。通过 TGA、XRD、EDS、FESEM、TEM 和 H(2)-TPR 分析对电催化剂进行了表征。通过循环伏安法 (CV)、CO 剥离和电化学阻抗谱 (EIS) 技术研究了电极在酸性介质中对甲醇氧化反应的电催化活性和稳定性。与 Pt/MWCNTs 相比,Pt/VO(x)-MWCNTs 电催化剂不仅表现出高电催化活性,而且在甲醇电氧化反应中表现出非常好的稳定性。此外,复合载体中 VO(x) 的存在极大地增加了铂纳米粒子的电化学活性表面积。电化学阻抗谱的结果表明,在载体中添加氧化钒后,表面吸附羟基的形成动力学得到改善。这种现象对于通过 Pt/VO(x)-MWCNTs 上的双功能机制促进吸附 CO 基团的氧化去除非常有帮助。

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