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Li+ 和 SCN- 在二甲亚砜溶液中的离子对动力学:化学交换二维红外光谱。

Ion-pairing dynamics of Li+ and SCN- in dimethylformamide solution: chemical exchange two-dimensional infrared spectroscopy.

机构信息

Department of Chemistry, Research Institute for Natural Sciences, Korea University, Seoul 136-701, South Korea.

出版信息

J Chem Phys. 2011 Feb 14;134(6):064506. doi: 10.1063/1.3552961.

Abstract

Ultrafast two-dimensional infrared (2DIR) spectroscopy has been proven to be an exceptionally useful method to study chemical exchange processes between different vibrational chromophores under thermal equilibria. Here, we present experimental results on the thermal equilibrium ion pairing dynamics of Li(+) and SCN(-) ions in N,N-dimethylformamide. Li(+) and SCN(-) ions can form a contact ion pair (CIP). Varying the relative concentration of Li(+) in solution, we could control the equilibrium CIP and free SCN(-) concentrations. Since the CN stretch frequency of Li-SCN CIP is blue-shifted by about 16 cm(-1) from that of free SCN(-) ion, the CN stretch IR spectrum is a doublet. The temperature-dependent IR absorption spectra reveal that the CIP formation is an endothermic (0.57 kJ∕mol) process and the CIP state has larger entropy by 3.12 J∕(K mol) than the free ion states. Since the two ionic configurations are spectrally distinguishable, this salt solution is ideally suited for nonlinear IR spectroscopic investigations to study ion pair association and dissociation dynamics. Using polarization-controlled IR pump-probe methods, we first measured the lifetimes and orientational relaxation times of these two forms of ionic configurations. The vibrational population relaxation times of both the free ion and CIP are about 32 ps. However, the orientational relaxation time of the CIP, which is ∼47 ps, is significantly longer than that of the free SCN(-), which is ∼7.7 ps. This clearly indicates that the effective moment of inertia of the CIP is much larger than that of the free SCN(-). Then, using chemical exchange 2DIR spectroscopy and analyzing the diagonal peak and cross-peak amplitude changes with increasing the waiting time, we determined the contact ion pair association and dissociation time constants that are found to be 165 and 190 ps, respectively. The results presented and discussed in this paper are believed to be important, not only because the ion-pairing dynamics is one of the most fundamental physical chemistry problems but also because such molecular ion-ion interactions are of critical importance in understanding Hofmeister effects on protein stability.

摘要

超快二维红外(2DIR)光谱已被证明是一种非常有用的方法,可以研究热平衡下不同振动发色团之间的化学交换过程。在这里,我们呈现了关于 Li(+)和 SCN(-)离子在 N,N-二甲基甲酰胺中的热平衡离子对动力学的实验结果。Li(+)和 SCN(-)离子可以形成接触离子对(CIP)。通过改变溶液中 Li(+)的相对浓度,我们可以控制平衡 CIP 和游离 SCN(-)浓度。由于 Li-SCN CIP 的 CN 伸缩频率比游离 SCN(-)离子蓝移约 16 cm(-1),因此 CN 伸缩 IR 光谱为双峰。温度依赖的 IR 吸收光谱表明,CIP 的形成是一个吸热(0.57 kJ/mol)过程,CIP 态的熵比自由离子态大 3.12 J/(K/mol)。由于这两种离子构型在光谱上是可区分的,因此这种盐溶液非常适合用于非线性 IR 光谱研究来研究离子对缔合和解离动力学。我们使用偏振控制的 IR 泵浦-探测方法,首先测量了这两种离子构型的寿命和取向弛豫时间。两种离子构型的振动布居弛豫时间约为 32 ps。然而,CIP 的取向弛豫时间约为 47 ps,明显长于游离 SCN(-)的约 7.7 ps。这清楚地表明,CIP 的有效转动惯量比游离 SCN(-)大得多。然后,我们使用化学交换 2DIR 光谱,并通过增加等待时间分析对角峰和交叉峰幅度的变化,确定了接触离子对的缔合和解离时间常数,分别为 165 和 190 ps。本文呈现和讨论的结果被认为是重要的,不仅因为离子对动力学是最基本的物理化学问题之一,还因为这种分子离子-离子相互作用对于理解对蛋白质稳定性的 Hofmeister 效应至关重要。

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