【2h】

On the recombination of hydronium and hydroxide ions in water

机译:关于水中水合氢离子和氢氧根离子的重组

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摘要

The recombination of hydronium and hydroxide ions following water ionization is one of the most fundamental processes determining the pH of water. The neutralization step once the solvated ions are in close proximity is phenomenologically understood to be fast, but the molecular mechanism has not been directly probed by experiments. We elucidate the mechanism of recombination in liquid water with ab initio molecular dynamics simulations, and it emerges as quite different from the conventional view of the Grotthuss mechanism. The neutralization event involves a collective compression of the water-wire bridging the ions, which occurs in approximately 0.5 ps, triggering a concerted triple jump of the protons. This process leaves the neutralized hydroxide in a hypercoordinated state, with the implications that enhanced collective compressions of several water molecules around similarly hypercoordinated states are likely to serve as nucleation events for the autoionization of liquid water.
机译:水电离后水合氢离子和氢氧根离子的重组是确定水的pH值的最基本过程之一。现象学上认为一旦溶剂化的离子非常接近,则中和步骤是快速的,但是分子机理尚未通过实验直接探究。我们从头开始进行分子动力学模拟,阐明了液态水中的重组机理,并且它与格罗特斯机理的传统观点完全不同。中和事件涉及水线桥接离子的集体压缩,大约在0.5ps时发生,从而触发质子的一致三重跳跃。该过程使中和的氢氧化物处于超配位状态,其含义是,围绕类似超配位状态的几个水分子的集体压缩增强,很可能充当液态水自动电离的成核事件。

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