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CO/Pt(111)在水中的电子特性的热效应。

Thermal effects on electronic properties of CO/Pt(111) in water.

机构信息

Department of Theoretical Chemistry and Biology, School of Biotechnology, Royal Institute of Technology, S-106 91 Stockholm, Sweden.

出版信息

Phys Chem Chem Phys. 2013 Aug 28;15(32):13619-27. doi: 10.1039/c3cp51545a.

Abstract

Structure and adsorption energy of carbon monoxide molecules adsorbed on the Pt(111) surfaces with various CO coverages in water as well as work function of the whole systems at room temperature of 298 K were studied by means of a hybrid method that combines classical molecular dynamics and density functional theory. We found that when the coverage of CO is around half monolayer, i.e. 50%, there is no obvious peak of the oxygen density profile appearing in the first water layer. This result reveals that, in this case, the external force applied to water molecules from the CO/Pt(111) surface almost vanishes as a result of the competitive adsorption between CO and water molecules on the Pt(111) surface. This coverage is also the critical point of the wetting/non-wetting conditions for the CO/Pt(111) surface. Averaged work function and adsorption energy from current simulations are consistent with those of previous studies, which show that thermal average is required for direct comparisons between theoretical predictions and experimental measurements. Meanwhile, the statistical behaviors of work function and adsorption energy at room temperature have also been calculated. The standard errors of the calculated work function for the water-CO/Pt(111) interfaces are around 0.6 eV at all CO coverages, while the standard error decreases from 1.29 to 0.05 eV as the CO coverage increases from 4% to 100% for the calculated adsorption energy. Moreover, the critical points for these electronic properties are the same as those for the wetting/non-wetting conditions. These findings provide a better understanding about the interfacial structure under specific adsorption conditions, which can have important applications on the structure of electric double layers and therefore offer a useful perspective for the design of the electrochemical catalysts.

摘要

采用经典分子动力学和密度泛函理论相结合的混合方法,研究了不同 CO 覆盖度下一氧化碳分子在 Pt(111)表面吸附的结构和吸附能以及整个系统在室温 298 K 下的功函数。我们发现,当 CO 的覆盖率约为半单层,即 50%时,在第一层水中没有出现明显的氧密度分布峰值。这一结果表明,在这种情况下,由于 CO 和水分子在 Pt(111)表面的竞争吸附,作用于水分子的来自 CO/Pt(111)表面的外力几乎为零。这个覆盖率也是 CO/Pt(111)表面润湿/非润湿条件的临界点。当前模拟的平均功函数和吸附能与先前研究一致,这表明理论预测与实验测量之间的直接比较需要进行热平均。同时,还计算了室温下功函数和吸附能的统计行为。在所有 CO 覆盖度下,水-CO/Pt(111)界面计算出的功函数的标准误差约为 0.6 eV,而随着 CO 覆盖度从 4%增加到 100%,吸附能的标准误差从 1.29 减小到 0.05 eV。此外,这些电子性质的临界点与润湿/非润湿条件的临界点相同。这些发现为特定吸附条件下的界面结构提供了更好的理解,这对电双层的结构具有重要的应用,并为电化学催化剂的设计提供了有用的视角。

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