Article ID Journal Published Year Pages File Type
1284764 Journal of Power Sources 2011 7 Pages PDF
Abstract

In the present work, the activity of PtxSny/C catalysts towards ethanol, acetaldehyde and acetic acid electrooxidation reactions is investigated for each one separately by means of cyclic voltammetry. To this purpose, a series of PtxSny/C catalysts with different atomic ratio (x:y = 2:1, 3:2, 1:1) and small particle size (∼3 nm) are fast synthesized by using the pulse microwave assisted polyol method. The catalysts are well dispersed over the carbon support based on the physicochemical characterization by means of XRD and TEM. Concerning the ethanol electrooxidation, it is found that the Sn addition strongly enhances Pt's electrocatalytic activity and the contributing effect of Sn depends on: (i) the Sn content and (ii) the operating temperature. More precisely, at lower temperatures, Sn-rich catalysts exhibit better ethanol electrooxidation performance while at higher temperatures Sn-poor catalysts give better performance. In the case of acetaldehyde electrooxidation, Pt1Sn1/C catalyst exhibits the highest activity at all the investigated temperatures; due to the role of Sn, which could effectively remove C2 species and inhibit the poison formation by supplying oxygen-containing species. Finally, it is found that the PtxSny/C catalysts are almost inactive (little current was measured) towards the acetic acid electrooxidation. The above findings indicate that Sn cannot substantially promote the electrooxidation of acetic acid to C1 species.

Research highlights► Study the activity of PtxSny/C catalysts towards ethanol electrooxidation by means of CV. ► Study the activity of PtxSny/C catalysts towards acetaldehyde electrooxidation by means of CV. ► Study the activity of PtxSny/C catalysts towards acetic acid electrooxidation by means of CV. ► In the case of acetaldehyde electrooxidation, Pt1Sn1/C catalyst exhibits the highest activity. ► PtxSny/C catalysts are almost inactive towards the acetic acid electrooxidation.

Related Topics
Physical Sciences and Engineering Chemistry Electrochemistry
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