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光照(红外光)对霍夫迈斯特盐序列的影响:改变碱金属卤化物盐溶液中水分子振动光谱的驱动力。

Shining (Infrared) Light on the Hofmeister Series: Driving Forces for Changes in the Water Vibrational Spectra in Alkali-Halide Salt Solutions.

机构信息

Department of Chemistry, University of Kansas, Lawrence, Kansas 66045, United States.

出版信息

J Phys Chem B. 2022 Sep 8;126(35):6700-6712. doi: 10.1021/acs.jpcb.2c03957. Epub 2022 Aug 25.

Abstract

The Hofmeister series is frequently used to rank ions based on their behavior from chaotropes ("structure breakers"), which weaken the surrounding hydrogen-bond network, to kosmotropes ("structure makers"), which enhance it. Here, we use fluctuation theory to investigate the energetic and entropic driving forces underlying the Hofmeister series for aqueous alkali-halide solutions. Specifically, we exploit the OH stretch infrared (IR) spectrum in isotopically dilute HOD/DO solutions as a probe of the effect of the salt on the water properties for different concentrations and choice of halide anion. Fluctuation theory is used to calculate the temperature derivative of these IR spectra, including decomposition of the derivative into different energetic contributions. These contributions are used to determine the thermodynamic driving forces in terms of effective internal energy and entropic contributions. This analysis implicates entropic contributions as the key factor in the Hofmeister series behavior of the OH stretch IR spectra, while the effective internal energy is nearly ion-independent.

摘要

霍夫迈斯特序列常用于根据离子的行为对其进行排序,根据其是亲水性的(“破坏氢键网络”)还是疏水性的(“增强氢键网络”)。在这里,我们使用涨落理论研究了水合碱金属卤化物溶液中霍夫迈斯特序列的能量和熵驱动力。具体来说,我们利用氘代水(HOD/DO)溶液中 OH 伸缩红外(IR)光谱作为盐对不同浓度和卤阴离子选择下水性质影响的探针。涨落理论用于计算这些 IR 光谱的温度导数,包括将导数分解为不同的能量贡献。这些贡献用于根据有效内能和熵贡献确定热力学驱动力。这种分析表明,熵贡献是 OH 伸缩 IR 光谱中霍夫迈斯特序列行为的关键因素,而有效内能几乎与离子无关。

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