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PNAS Plus: Ab initio molecular dynamics of solvation effects on reactivity at electrified interfaces

机译:PNAS Plus:电气化界面上溶剂化作用的从头算分子动力学

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摘要

Using ab initio molecular dynamics as implemented in periodic, self-consistent (generalized gradient approximation Perdew–Burke–Ernzerhof) density functional theory, we investigated the mechanism of methanol electrooxidation on Pt(111). We investigated the role of water solvation and electrode potential on the energetics of the first proton transfer step, methanol electrooxidation to methoxy (CH3O) or hydroxymethyl (CH2OH). The results show that solvation weakens the adsorption of methoxy to uncharged Pt(111), whereas the binding energies of methanol and hydroxymethyl are not significantly affected. The free energies of activation for breaking the C−H and O−H bonds in methanol were calculated through a Blue Moon Ensemble using constrained ab initio molecular dynamics. Calculated barriers for these elementary steps on unsolvated, uncharged Pt(111) are similar to results for climbing-image nudged elastic band calculations from the literature. Water solvation reduces the barriers for both C−H and O−H bond activation steps with respect to their vapor-phase values, although the effect is more pronounced for C−H bond activation, due to less disruption of the hydrogen bond network. The calculated activation energy barriers show that breaking the C−H bond of methanol is more facile than the O−H bond on solvated negatively biased or uncharged Pt(111). However, with positive bias, O−H bond activation is enhanced, becoming slightly more facile than C−H bond activation.
机译:使用在周期性,自洽(广义梯度近似Perdew–Burke–Ernzerhof)密度泛函理论中实现的从头算分子动力学,我们研究了Pt(111)上甲醇电氧化的机理。我们研究了水溶剂化和电极电势对质子转移第一步,甲醇电氧化成甲氧基(CH3O)或羟甲基(CH2OH)的能量的作用。结果表明,溶剂化作用减弱了甲氧基对不带电荷的Pt(111)的吸附,而甲醇和羟甲基的结合能并未受到明显影响。通过使用约束的从头算分子动力学通过蓝月合奏团计算了破坏甲醇中的CH和O-H键的活化自由能。在未溶剂化,不带电的Pt(111)上这些基本步骤的计算壁垒与文献中对爬升图像带动弹性带计算的结果相似。尽管由于氢键网络的破坏较少,但对于CH键和CH键的活化作用,水溶作用降低了CH键和OH键活化步骤相对于其汽相值的壁垒。计算得出的活化能垒表明,在溶剂化的负偏压或不带电的Pt(111)上,打破甲醇的C-H键比O-H键更容易。但是,在正偏压作用下,OH键的活化作用增强,比CH键的活化作用更容易。

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