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Solvent-induced infrared frequency shifts in aromatic nitriles are quantitatively described by the vibrational Stark effect

机译:在芳香族腈溶剂诱导红外线频移定量振动斯塔克效应描述

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摘要

The physical properties of solvents strongly affect the spectra of dissolved solutes, and this phenomenon can be exploited to gain insight into the solvent-solute interaction. The large solvatochromic shifts observed for many dye molecules in polar solvents are due to variations in the solvent reaction field, and these shifts are widely used to estimate the change in the dye’s dipole moment upon photoexcitation, which is typically on the order of ~1-10 Debye. In contrast, the change in dipole moment for vibrational transitions is approximately two orders of magnitude smaller. Nonetheless, vibrational chromophores display significant solvatochromism, and the relative contributions of specific chemical interactions and electrostatic interactions are debated, complicating the interpretation of vibrational frequency shifts in complex systems such as proteins. Here we present a series of substituted benzonitriles that display widely varying degrees of vibrational solvatochromism. In most cases, this variation can be quantitatively described by the experimentally determined Stark tuning rate, coupled with a simple Onsager-like model of solvation, reinforcing the view that vibrational frequency shifts are largely caused by electrostatic interactions. In addition, we discuss specific cases where continuum solvation models fail to predict solvatochromic shifts, revealing the necessity for more advanced theoretical models that capture local aspects of solute-solvent interactions.
机译:溶剂的物理性质强烈影响溶解溶质的光谱,并且可以利用这种现象来深入了解溶剂溶质相互作用。在极性溶剂中观察到的许多染料分子的大溶色溶质偏移是由于溶剂反应场的变化,并且这些变化被广泛用于估计光透镜上染料的偶极力矩的变化,这通常是约为〜1的顺序10德拜岛。相比之下,振动过渡的偶极矩的变化大约是较小的两个数量级。尽管如此,振动发色团显示出显着的溶性溶解度,并且特定化学相互作用和静电相互作用的相对贡献是争论的,使振动频率变化在蛋白质如蛋白质中的振动频率的解释。在这里,我们提出了一系列取代的苯腈,其显示出广泛变化的振动溶性溶剂变性。在大多数情况下,该变化可以通过实验确定的STARK调谐速率来定量描述,与简单的onSage的求解模型相结合,加强振动频率偏移在很大程度上是由静电相互作用引起的视图。此外,我们讨论了连续溶剂化模型未能预测溶性变量变换的具体情况,揭示了捕获溶质溶剂相互作用的局部方面的更先进理论模型的必要性。

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