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水溶液中的局部电场。

Local Electric Fields in Aqueous Electrolytes.

机构信息

Department of Chemistry and Biochemistry, University of Notre Dame, Notre Dame, Indiana 46556, United States.

Department of Chemistry and National Nanotechnology Research Center (UNAM), Bilkent University, 06800 Ankara, Turkey.

出版信息

J Phys Chem B. 2021 Aug 5;125(30):8484-8493. doi: 10.1021/acs.jpcb.1c03257. Epub 2021 Jul 27.

Abstract

Vibrational Stark shifts were explored in aqueous solutions of organic molecules with carbonyl- and nitrile-containing constituents. In many cases, the vibrational resonances from these moieties shifted toward lower frequency as salt was introduced into solution. This is in contrast to the blue-shift that would be expected based upon Onsager's reaction field theory. Salts containing well-hydrated cations like Mg or Li led to the most pronounced Stark shift for the carbonyl group, while poorly hydrated cations like Cs had the greatest impact on nitriles. Moreover, salts containing I gave rise to larger Stark shifts than those containing Cl. Molecular dynamics simulations indicated that cations and anions both accumulate around the probe in an ion- and probe-dependent manner. An electric field was generated by the ion pair, which pointed from the cation to the anion through the vibrational chromophore. This resulted from solvent-shared binding of the ions to the probes, consistent with their positions in the Hofmeister series. The "anti-Onsager" Stark shifts occur in both vibrational spectroscopy and fluorescence measurements.

摘要

振动斯塔克位移在含有羰基和腈基的有机分子的水溶液中得到了研究。在许多情况下,随着盐的引入,这些部分的振动共振向低频移动。这与基于 Onsager 反应场理论所预期的蓝移相反。含有像 Mg 或 Li 这样水合良好的阳离子的盐导致羰基的斯塔克位移最为明显,而像 Cs 这样水合不良的阳离子对腈的影响最大。此外,含有 I 的盐比含有 Cl 的盐产生更大的斯塔克位移。分子动力学模拟表明,阳离子和阴离子都以离子和探针依赖的方式在探针周围积聚。离子对产生电场,该电场通过振动发色团从阳离子指向阴离子。这是由于离子与探针的溶剂共享结合,与它们在 Hofmeister 序列中的位置一致。“反 Onsager”斯塔克位移既出现在振动光谱中,也出现在荧光测量中。

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