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Lewis-inspired representation of dissociable water in clusters and Grotthuss chains

机译:刘易斯启发的簇和格罗特斯链中可分解水的表示

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摘要

Proton transfer to and from water is critical to the function of water in many settings. However, it has been challenging to model. Here, we present proof-of-principle for an efficient yet robust model based on Lewis-inspired submolecular particles with interactions that deviate from Coulombic at short distances to take quantum effects into account. This “LEWIS” model provides excellent correspondence with experimental structures for water molecules and water clusters in their neutral, protonated and deprotonated forms; reasonable values for the proton affinities of water and hydroxide; a good value for the strength of the hydrogen bond in the water dimer; the correct order of magnitude for the stretch and bend force constants of water; and the expected time course for Grotthuss transport in water chains.
机译:在许多情况下,质子与水之间的转移对于水的功能至关重要。但是,建模一直很困难。在这里,我们提出基于路易斯启发的亚分子粒子的有效而健壮模型的原理证明,其相互作用在短距离内偏离库仑比克以考虑量子效应。该“ LEWIS”模型与中性,质子化和去质子化形式的水分子和水团簇的实验结构具有极好的对应性;水和氢氧化物的质子亲和力的合理值;水二聚体中氢键强度的良好值;水的拉伸力和弯曲力常数的正确数量级;以及格罗特斯在水链中运输的预期时程。

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