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首页> 外文期刊>The journal of physical chemistry, B. Condensed matter, materials, surfaces, interfaces & biophysical >Coulostatic Potential Transients Induced by Laser Heating of a Pt(111) Single-Crystal Electrode in Aqueous Acid Solutions. Rate of Hydrogen Adsorption and Potential of Maximum Entropy
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Coulostatic Potential Transients Induced by Laser Heating of a Pt(111) Single-Crystal Electrode in Aqueous Acid Solutions. Rate of Hydrogen Adsorption and Potential of Maximum Entropy

机译:在水溶液中通过激光加热Pt(111)单晶电极引起的库仑静电势瞬态。氢的吸附速率和最大熵势

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摘要

Short pulses (~ 10 ns) of high-power laser light produce a sudden increase in the surface temperature of a Pt(111) single-crystal electrode in acidified potassium perchlorate or sulfate solutions. The change of the electrode potential at open circuit was monitored during the relaxation of the temperature. At low Ph, the potential transient in the hydrogen adsorption region exhibit a bipolar shape, which can be explained considering that the relaxation is influenced by the rate of hydrogen adsorption. With this assumption, we have estimated a value of the rate constant for hydrogen adsorption around 8 * 10~6 M~(-1)s~(-1). By increasing the pH, the rate of hydrogen adsorption is reduced, making it possible to decouple the double-layer response from the hydrogen adsorption process. In this case, the potential where the double-layer response to the temperature increase in zero can be identified with the potential of maximum entropy of formation of the double layer. This potential is located in the double-layer region (ca. 0.43 V vs Pd/H_2) for a solution of pH 3. The relevance of this measurement in terms of the location of the potential of zero charge is discussed.
机译:在强酸高氯酸钾或硫酸盐溶液中,短脉冲(〜10 ns)的高功率激光会使Pt(111)单晶电极的表面温度突然升高。在温度松弛期间监测开路时电极电势的变化。在低Ph值下,氢吸附区域中的电势瞬变呈现双极形状,考虑到弛豫受氢吸附速率的影响,可以解释这种情况。在此假设下,我们估计了氢吸附速率常数的值约为8 * 10〜6 M〜(-1)s〜(-1)。通过提高pH值,降低了氢吸附的速率,从而可以使双层响应与氢吸附过程脱钩。在这种情况下,可以利用双层形成的最大熵的电位来识别双层对温度的响应为零的电位。对于pH为3的溶液,该电势位于双层区域(约0.43 V对Pd / H_2)。讨论了该测量在零电荷电势位置方面的相关性。

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