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首页> 外文期刊>Journal of power sources >Ethylene glycol electrooxidation on carbon supported Pt, PtRu and Pt_3 catalysts-A comparative DEMS study
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Ethylene glycol electrooxidation on carbon supported Pt, PtRu and Pt_3 catalysts-A comparative DEMS study

机译:碳载Pt,PtRu和Pt_3催化剂上的乙二醇电氧化-比较DEMS研究

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摘要

We present results of a comparative study on the interaction of ethylene glycol (EG) with carbon supported Pt, PtRu and Pt_3Sn nanoparticle catalysts, employing electrochemical and quantitative differential electrochemical mass spectroscopy (DEMS) measurements under continuous reaction and continuous electrolyte flow conditions. For all three catalysts EG adsorption is inhibited at very cathodic adsoiption potentials, dissociative adsorption starts above 0.06 V and increases with increasing potential. Based on the electron yield per formed CO_2 molecule and on the similarity with the CO_(ad) stripping characteristics CO_(ad ) is identified as the main stable adsorbate; the relative coverage in terms of adsorbed Cl species, relative to that of a saturated CO adlayer on the respective catalyst, reaches a maximum of ca. 0.6 at around 0.4 V on Pt/Vulcan, ca. 0.2 at around 0.2 V on PtRu/Vulcan and ca. 0.4 at around 0.35 V on Pt_3Sn/Vulcan. Bulk EG electrooxidation under steady-state conditions shows a very small current efficiency for CO_2 formation of below 6 percent for 0.1 M EG on all three catalysts, the oxidation of EG mainly generates partly oxidized C2 by-products. Catalyst modification by Ru or Sn improves the activity for EG oxidation at low potentials (<0.56 V), but does not lead to better selectivities for complete EG oxidation to CO_2 at potentials with significant oxidation rates. Hence, C-C bond breaking is rate limiting for complete oxidation under present reaction conditions for all three catalysts. The data are consistent with a parallel pathway reaction mechanism, with formation and subsequent oxidation of CO_(ad)) in the one pathway and partial oxidation, via a sequence of reaction steps, to increasingly oxidized C2 species in the other pathway.
机译:我们提供了在连续反应和连续电解质流动条件下,采用电化学和定量差分电化学质谱(DEMS)测量方法,对乙二醇(EG)与碳负载的Pt,PtRu和Pt_3Sn纳米颗粒催化剂相互作用的比较研究结果。对于所有这三种催化剂,在非常高的阴极吸附电位下,EG吸附都受到抑制,解离吸附在0.06 V以上开始,并随着电位的增加而增加。根据每个形成的CO_2分子的电子收率和与CO_(ad)的汽提特性的相似性,CO_(ad)被确定为主要的稳定吸附物。相对于相应催化剂上的饱和CO吸附层,相对于吸附的Cl物种而言,相对覆盖率达到最大值。在Pt / Vulcan上约0.4 V时约为0.6。在PtRu / Vulcan上约0.2 V时为0.2,大约Pt_3Sn / Vulcan上的0.35 V附近为0.4。稳态条件下的本体EG电氧化表明,在所有三种催化剂上,对于0.1 M EG,CO_2形成的电流效率都非常低,低于6%,EG的氧化主要产生部分氧化的C2副产物。通过Ru或Sn修饰催化剂可提高低电势(<0.56 V)下EG氧化的活性,但在具有显着氧化速率的电势下,不能为将EG完全氧化为CO_2带来更好的选择性。因此,对于所有三种催化剂,在当前反应条件下,C-C键断裂是完全氧化的速率限制。数据与平行途径反应机理一致,在一个途径中形成和随后氧化CO_(ad)),并通过一系列反应步骤部分氧化为在另一途径中逐渐氧化的C2物种。

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