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首页> 外文期刊>Journal of Molecular Liquids >Raman vibrational dynamics of hydrated ions in the low-frequency spectral region
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Raman vibrational dynamics of hydrated ions in the low-frequency spectral region

机译:低频光谱区水合离子的拉曼振动动力学

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The hydration structure of ions in aqueous environments can have a significant influence on their chemical and biological properties. Due to its inherent dynamical character, determination of the hydration shell around dissolved ions has proved challenging, mainly so for cations such as sodium and potassium which form diffuse and dynamic hydrating structures. The low frequency polarized Raman spectrum, as retrieved by time resolved isotropic optical Kerr effect measurements, is sensitive to structural fluctuations and can reveal information about ion-water interactions through their Raman active vibrational modes. Here we study a series of mixtures of sodium, potassium and lithium hydroxide solutions by changing cation concentration pairwise (namely, sodium/potassium or sodium/lithium) while keeping constant the hydroxide concentration. The hydroxide-water hydrogen bond vibration, which produces a well-defined isotropic Raman mode, appears at higher frequencies from the cation-water Raman active vibrations. In addition to previously reported lithium-water low frequency vibrations, clear spectral features could be resolved from the concentration studies and assigned to sodium-water hydration shell vibrations. However, potassium related low frequency spectral features remain elusive. The same method was applied to mixtures of the same cations with a halide anion (chloride) in order to rule out any specific features related to the dissolved hydroxide anion. Comparison between halide and hydroxide measurements confirmed the presence of the cation modes and further revealed a low frequency spectral feature related to hydroxide induced changes in water polarizability. (C) 2016 Elsevier B.V. All tights reserved.
机译:水性环境中离子的水合结构可对其化学和生物学性质产生显着影响。由于其固有的动态特征,确定溶解离子周围的水合壳的测定已经证明了雄性,主要是用于形成弥漫性和动态水合结构的钠和钾等阳离子。通过定时分辨各向同性光学克尔效应测量的低频偏振拉曼光谱对结构波动敏感,并且可以通过拉曼有源振动模式揭示有关离子水相互作用的信息。在这里,我们通过改变阳离子浓度(即,钠/钾或钠/锂),同时保持恒定氢氧化物浓度,研究一系列钠,钾和氢氧化锂溶液的混合物。产生明确定义的各向同性拉曼模式的氢氧化物 - 水氢键振动出现在阳离子 - 水拉曼主动振动的较高频率下。除了先前报道的锂水低频振动之外,可以从浓度研究中解析透明光谱特征,并分配给水水合壳振动。然而,相关的低频光谱特征仍然难以捉摸。将与卤化物阴离子(氯化物)的相同阳离子的混合物施加相同的方法,以便排除与溶解的氢氧化物阴离子有关的任何特定特征。卤化物和氢氧化物测量之间的比较证实存在阳离子模式,进一步揭示了与氢氧化物诱导的水极化变化有关的低频光谱特征。 (c)2016 Elsevier B.v.所有紧身衣保留。

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