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Ion Hydration and Ion Pairing as Probed by THz Spectroscopy

机译:通过THz光谱法探测离子水合和离子配对

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摘要

Ion hydration is of pivotal importance for many fundamental processes. Various spectroscopic methods are used to study the retardation of the hydration bond dynamics in the vicinity of anions and cations. Here we introduce THz-FTIR spectroscopy as a powerful method to answer the open questions. We show through dissection of THz spectra that we can pinpoint characteristic absorption features that can be attributed to the rattling modes of strongly hydrating ions within their hydration cages as well as vibrationally induced charge fluctuations in the case of weakly hydrating ions. Further analysis yields information on anion-cation cooperativity, the size of the dynamic hydration shell, as well as the lifetimes of these collective ion-hydration water modes and their connecting thermal bath states. Our study provides evidence for a non-additive behavior, thus questioning the simplified Hofmeister model. THz spectroscopy enables ion pairing to be observed and quantified at a high salt concentration.
机译:离子水合是许多基本过程的重要意义。使用各种光谱法研究了阴离子和阳离子附近的水化键动力学的延迟。在这里,我们将Thz-FTIR光谱学介绍作为回答打开问题的强大方法。我们通过解剖光谱来展示我们可以针对其水合笼内的强水合离子的嘎嘎作用,以及在弱水合离子的情况下归因于嘎嘎作曲的特征吸收特征。进一步的分析产生关于阴离子合作的信息,动态水合壳的尺寸以及这些集体离子水合水模式的寿命及其连接的热浴状态。我们的研究提供了非添加性行为的证据,从而质疑简化的Hofmeister模型。 THz光谱学能够以高盐浓度观察和量化离子配对。

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