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电化学促进 Pt/YSZ 催化剂上的乙烯氧化。

The electrochemical promotion of ethylene oxidation at a Pt/YSZ catalyst.

机构信息

Institut für Physikalische Chemie und Elektrochemie, Leibniz-Universität Hannover, Callinstrasse 3-3a, 30167 Hannover, Germany.

出版信息

Chemphyschem. 2010 May 17;11(7):1452-9. doi: 10.1002/cphc.200900936.

Abstract

The electrochemical promotion of the C(2)H(4)+O(2) reaction to form CO(2) and H(2)O is studied in the 10(-5) and 10(-4) mbar range with a Pt catalyst interfaced as working electrode to yttrium-stabilized zirconia (YSZ). Photoemission electron microscopy (PEEM) was used as spatially resolving method. Under open-circuit conditions, that is, without an external voltage applied, the CO(2) production exhibits a pronounced hysteresis upon cyclic variation of p(C(2)H(4)). The hysteresis is attributed to the build-up of a carbonaceous CH(x) layer inhibiting O(2) adsorption and hence poisoning the reaction. It is shown that the application of a positive potential of 1 V triggers a transition from the unreactive branch of the reaction to an active branch. The large non-Faradayicity reported in the literature for this reaction system is explained as an ignition effect caused by the partial removal of the inhibiting carbonaceaous layer.

摘要

电化学促进 C(2)H(4)+O(2) 反应生成 CO(2) 和 H(2)O 的研究在 10(-5) 和 10(-4) mbar 范围内进行,使用 Pt 催化剂作为工作电极与钇稳定氧化锆 (YSZ) 相连接。光电发射电子显微镜 (PEEM) 被用作空间分辨方法。在开路条件下,即没有施加外部电压,在 p(C(2)H(4)) 循环变化时,CO(2) 的生成表现出明显的滞后现象。这种滞后现象归因于含碳 CH(x)层的形成抑制了 O(2)的吸附,从而使反应中毒。结果表明,施加 1 V 的正电势会引发从反应的非活性分支到活性分支的转变。文献中报道的该反应体系的大非法拉第性被解释为部分去除抑制性含碳层引起的点火效应。

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