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Interaction between liquid water and hydroxide revealed by core-hole de-excitation

机译:岩心孔消磁法揭示了液态水与氢氧化物之间的相互作用

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The hydroxide ion plays an important role in many chemical and biochemical processes in aqueous solution. But our molecular-level understanding of its unusual and fast transport in water, and of the solvation patterns that allow fast transport, is far from complete. One proposal seeks to explain the properties and behaviour of the hydroxide ion by essentially regarding it as a water molecule that is missing a proton, and by inferring transport mechanisms and hydration structures from those of the excess proton. A competing proposal invokes instead unique and interchanging hydroxide hydration complexes, particularly the hypercoordinated OH~-(H_2O)_4 species and tri-coordinated OH~-(H_2O)_3 that can form a transient hydrogen bond between the H atom of the OH~- and a neighbouring water molecule. Here we report measurements of core-level photoelectron emission and intermolecular Coulombic decay for an aqueous hydroxide solution, which show that the hydrated hydroxide ion is capable of transiently donating a hydrogen bond to surrounding water molecules. In agreement with recent experimental studies of hydroxide solutions, our finding thus supports the notion that the hydration structure of the hydroxide ion cannot be inferred from that of the hydrated excess proton.
机译:氢氧根离子在水溶液中的许多化学和生化过程中起着重要作用。但是,我们对其在水中的异常和快速运输以及允许快速运输的溶剂化模式的分子水平的了解还远远不够。一项提案试图通过基本上将氢氧离子视为缺少质子的水分子,并通过过量质子的运移机理和水合结构来推断氢氧根离子的性质和行为。一个有竞争性的提议取而代之的是调用独特且可互换的氢氧化物水合配合物,特别是超配位的OH〜-(H_2O)_4和三配位的OH〜-(H_2O)_3,它们可以在OH〜-的H原子之间形成瞬态氢键。和邻近的水分子。在这里,我们报告了对氢氧化物水溶液进行的核能级光电子发射和分子间库伦衰变的测量,结果表明,水合的氢氧根离子能够向周围的水分子瞬时提供氢键。与最近对氢氧化物溶液的实验研究相一致,因此我们的发现支持以下观点:不能从水合的过量质子的结构推断出氢氧根离子的水合结构。

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