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Effects of the Ba Impregnation on Pt Electrode on NO Electrochemical Reduction Mechanism

机译:Ba浸渍Pt电极对NO电化学还原机理的影响

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The study investigated the electrochemical reduction performances of NO and O_(2) on Pt symmetric electrode with Ba adsorption layer. The temperature varied from 350°C to 550°C. The experimental Ba (NO_(3))_(2) solution was impregnated in the Pt electrode. For the NO performance, the polarization curves and CV tests showed that the Pt-BaO electrode showed higher electrochemical performance than Pt electrode. EIS results revealed that the Pt-BaO electrode exhibited higher activity than the Pt electrode. It was due to the decreased polarization resistance in the low-frequency region that dominated the electrochemical impedance spectra. The increase of temperature strengthened the effect of adsorption layer on NO electrochemical performance. The EIS results were fitted well with the equivalent circuit model indicating that the improved mechanism with the Ba adsorption layer may be related with the NO oxidation to NO_(2) on the Pt surface, the formation of Ba (NO_(3))_(2) in the adsorption layer and the reduction of the reaction path from the direct Ba (NO_(3))_(2) decomposition.
机译:研究了带Ba吸附层的Pt对称电极上NO和O_(2)的电化学还原性能。温度在350℃至550℃之间变化。将实验Ba(NO_(3))_(2)溶液浸渍在Pt电极中。对于NO性能,极化曲线和CV测试表明Pt-BaO电极的电化学性能高于Pt电极。 EIS结果表明,Pt-BaO电极比Pt电极具有更高的活性。归因于低频区域中极化电阻的降低主导了电化学阻抗谱。温度的升高增强了吸附层对NO电化学性能的影响。 EIS结果与等效电路模型吻合得很好,表明具有Ba吸附层的改进机理可能与Pt表面NO氧化成NO_(2),形成Ba(NO_(3))_( 2)在吸附层中还原反应路径并直接由Ba(NO_(3))_(2)分解。

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