Voevodsky Institute of Chemical Kinetics and Combustion, Russian Academy of Sciences, Novosibirsk, Russia.
Department of Physics, Novosibirsk State University, Russia.
Phys Chem Chem Phys. 2022 Mar 9;24(10):5974-5981. doi: 10.1039/d1cp05162h.
Deep eutectic solvents (DESs) are eutectic mixtures of hydrogen bond acceptors and hydrogen bond donors which melt at much lower temperatures than the individual components. DESs are attracting growing interest because of a large variety of possible technological applications. Here, supercooled DESs consisting of choline chloride-urea (1 : 2) (reline) and of choline chloride-thiourea (1 : 2) (ChCl-thiourea), with introduced nitroxide spin probe tempone, were studied by electron paramagnetic resonance (EPR) spectroscopy. Conventional continuous wave (CW) EPR spectra showed the coexistence of solid and liquid microphases, with microviscosity of ∼ 10 P in the latter case. CW EPR spectra taken at different temperatures for ChCl-thiourea showed isosbestic points, which indicates that two phases are separated by sharp boundaries; for reline these points are rather diffuse, which in turn implies diffuse boundaries. Stochastic molecular librations detected by pulsed EPR possess the ability for elucidating nanoscale features of molecular packing; the data obtained showed a drastic difference for the onset of these motions for ChCl-thiourea and for reline, which was interpreted as evidence that the rigidity of molecular packing for ChCl-thiourea is stronger than that for reline. The temperature dependence of stochastic molecular librations for reline was found to be similar to that known for lipid bilayers and globular proteins, which indicates the proximity of the characteristics of molecular packing in these molecular systems.
深共熔溶剂 (DESs) 是氢键受体和氢键供体的共晶混合物,其熔点远低于各组分的熔点。由于可能有多种技术应用,DESs 越来越受到关注。在这里,研究了由氯化胆碱-尿素(1:2)(reline)和氯化胆碱-硫脲(1:2)(ChCl-硫脲)组成的过冷 DESs,其中引入了氮氧自由基自旋探针 tempone。通过电子顺磁共振(EPR)光谱研究了这些 DESs。常规连续波(CW)EPR 光谱显示了固液微相的共存,后者的微粘度约为 10P。对于 ChCl-硫脲,在不同温度下采集的 CW EPR 光谱显示出等色点,这表明两种相由 sharp 边界隔开;对于 reline,这些点则比较模糊,这反过来又意味着模糊的边界。通过脉冲 EPR 检测到的随机分子摆动具有阐明分子堆积纳米尺度特征的能力;获得的数据表明,对于 ChCl-硫脲和 reline 起始这些运动的能力存在显著差异,这被解释为 ChCl-硫脲分子堆积的刚性强于 reline 的证据。发现 reline 的随机分子摆动的温度依赖性与已知的脂质双层和球状蛋白质的温度依赖性相似,这表明这些分子体系中分子堆积的特征相近。