首页> 外文期刊>Journal of Electroanalytical Chemistry: An International Journal Devoted to All Aspects of Electrode Kinetics, Interfacial Structure, Properties of Electrolytes, Colloid and Biological Electrochemistry >Scanning electrochemical microscopy of hydrogen electro-oxidation Part II. Coverage and potential dependence of platinum deactivation by carbon monoxide
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Scanning electrochemical microscopy of hydrogen electro-oxidation Part II. Coverage and potential dependence of platinum deactivation by carbon monoxide

机译:氢电氧化的扫描电化学显微镜第二部分。一氧化碳钝化铂的覆盖率和电位依赖性

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We describe measurements using the scanning electrochemical microscope (SECM) to evaluate the reactivity of polycrystalline platinum towards the hydrogen oxidation reaction in the presence and absence of adsorbed carbon monoxide (CO). Steady-state rate constant measurements for the hydrogen oxidation reaction on platinum in a CO saturated sulfuric acid solution indicate that the platinum surface is completely inactive at potentials low 0.8 V (vs. RHE) due to adsorbed CO. Rate constant measurements as a function of fractional CO coverage (θ_CO)) show that the activity of the platinum surface towards hydrogen oxidation is high for θ_(CO) < 0.6 ML but drops precipitously for θ_(CO) > 0.6 ML and becomes completely inactive for θ_(CO) ≥ 0.8 ML. Surprisingly, dynamic tip-substrate voltammetry (TSV) experiments show that CO-covered platinum surface becomes highly active for hydrogen oxidation at potentials in the pre-ignition region (0.4-0.7 V) where the surface is completely inactive under steady-state conditions. This activation is thought to occur due to a surface phase transition between a high coverage, weakly adsorbed CO (CO_(ads,w)) state that forms at low potentials and a lower coverage, strongly adsorbed CO (CO_(ads,s)) state that is favored at high potentials. This structural phase transition results in the creation of reactive sites of sufficient quantity that diffusion-limited oxidation rates are observed for hydrogen oxidation in the pre-ignition region. Although, this activation was found to be transient, pulsing the substrate potential between the hydrogen adsorption (~0.1 V) and pre-ignition (0.4-0.7 V) regions resulted in a sustained activity for hydrogen oxidation on a nominally high CO coverage surface.
机译:我们描述了使用扫描电化学显微镜(SECM)进行的测量,以评估在存在和不存在一氧化碳(CO)的情况下多晶铂对氢氧化反应的反应性。在CO饱和硫酸溶液中铂上的氢氧化反应的稳态速率常数测量值表明,由于吸附了CO,铂表面在低电位0.8 V(vs. RHE)时是完全失活的。分数CO覆盖率(θ_CO))表明,当θ_(CO)<0.6 ML时,铂表面对氢氧化的活性较高,但当θ_(CO)> 0.6 ML时,铂表面的氢活性急剧下降,而当θ_(CO)≥0.8时,铂表面完全失活ML。令人惊讶的是,动态尖端基底伏安法(TSV)实验表明,在稳态条件下该表面完全失活的预点火区域(0.4-0.7 V)的电势下,CO覆盖的铂表面对氢氧化具有很高的活性。该活化被认为是由于在低电势下形成的高覆盖率的弱吸附CO(CO_(ads,w))状态和较低覆盖率的强吸附CO(CO_(ads,s))之间的表面相变而发生的处于高潜力的国家。这种结构上的相变导致产生足够数量的反应位点,从而在预点火区域观察到氢氧化的扩散受限的氧化速率。尽管发现该活化是短暂的,但在氢吸附(〜0.1 V)和预点火(0.4-0.7 V)区域之间脉冲基板电位会导致名义上高的CO覆盖表面上持续的氢氧化活性。

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