首页> 外文期刊>The journal of physical chemistry, B. Condensed matter, materials, surfaces, interfaces & biophysical >Restructuring of Hydration Shell Water due to Solvent-Shared Ion Pairing (SSIP): A Case Study of Aqueous MgCl2 and LaCl3 Solutions
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Restructuring of Hydration Shell Water due to Solvent-Shared Ion Pairing (SSIP): A Case Study of Aqueous MgCl2 and LaCl3 Solutions

机译:溶剂共用离子配对引起的水化壳水的重组(SSIP):MGCL2水溶液和LACL3溶液的情况

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摘要

Hydration of ions plays a crucial role in interionic interactions and associated processes in aqueous media, but selective probing of the hydration shell water is nontrivial. Here, we introduce Raman difference with simultaneous curve fitting (RD-SCF) analysis to extract the OH-stretch spectrum of hydration shell water, not only for the fully hydrated ions (Mg2+, La3+, and Cl-) but also for the ion pairs. RD-SCF analyses of diluted MgCl2 (0.18 M) and LaCl3 (0.12 M) solutions relative to aqueous NaCI of equivalent Cr concentrations provide the OH-stretch spectra of water in the hydration shells of fully hydrated Mg2+ and La3+ cations relative to that of Nat. Integrated intensities of the hydration shell spectra of Mg2+ and La3+ ions increase linearly with the salt concentration (up to 2.0 M MgCl2 and 1.3 M LaCl3), which suggests no contact ion pair (CIP) formation in the MgCl2 and LaCI 3 solutions. Nevertheless, the band shapes of the cation hydration shell spectra show a growing signature of Cl--associated water with the rising salt concentration, which is a manifestation of the formation of a solvent-shared ion pair (SSIP). The OH-stretch spectrum of the shared/intervening water in the SSIP, retrieved by second-round RD-SCF analysis (2RD-SCF), shows that the average H-bonding of the shared water is weaker than that of the hydration water of the fully hydrated cation (Mg2+ or La3+) but stronger than that of the anion (Cl-). The shared water displays an overall second-order dependence on the concentration of the interacting ions, unveiling 1:1 stoichiometry of the SSIP formed between Mg2+ and Cl- as well as La3+ and Cl-.
机译:离子的水合在水性介质中的相互作用和相关方法中起着至关重要的作用,但是选择性探测水合壳水是不动的。在这里,我们引入与同时曲线拟合(RD-SCF)分析的拉曼差异,以提取水合壳水的OH-拉伸光谱,不仅适用于完全水合的离子(Mg2 +,La3 +和Cl-),还用于离子对。相对于当量Cr浓度的NaCl水溶液的稀释MgCl2(0.18μm)和LacL3(0.12μm)溶液的RD-SCF分析为完全水合的Mg2 +和La3 +阳离子的水合壳中的水的OH-拉伸光谱提供相对于NAT的水合壳。 Mg2 +和La3 +离子的水合壳光谱的综合强度随盐浓度(高达2.0mMgCl2和1.3M Lac3)线性增加,这表明在MgCl 2和Laci 3溶液中没有形成接触离子对(CIP)。然而,阳离子水合壳光谱的带形状显示Cl型水的繁衍患者,其盐浓度上升,这是形成溶剂共用离子对(SSIP)的形成。 SSIP中的共用/中间水的OH-拉伸光谱,通过二轮RD-SCF分析(2RD-SCF)检出,表明共用水的平均H键合比水合水的平均H键合完全水合的阳离子(Mg2 +或La3 +),但比阴离子(Cl-)的阳离子强。共用水显示了对相互作用离子浓度的总二阶依赖性,揭开在Mg2 +和Cl-以及La3 +和Cl-之间形成的SSIP的1:1化学计量。

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