Zhou Juin W, Arbab M Hassan
Department of Biomedical Engineering, Stony Brook University, 100 Nicolls Rd, Stony Brook, NY 11794, USA.
Phys Chem Chem Phys. 2021 Feb 25;23(7):4426-4436. doi: 10.1039/d0cp06707e.
There are many effective medium models that accurately describe the dielectric properties of mixtures. However, these models assume that the components are non-interacting. This assumption is not valid for solutions of polar liquids, resulting in significant deviations between the measured and theoretically predicted values of the complex index of refraction of the mixtures. We present three effective medium theories by expanding the well-known Debye relaxation model for solutions of polar liquids in the terahertz (THz) regime. The new effective medium models proposed in this paper predict the individual relaxation Debye parameters based on the cooperative motion dynamics and self-associative properties of each mixture, and therefore explain the deviation of the dielectric functions of the solutions from the traditional effective medium models. These models are verified through reflection measurements of four alcohol-water solutions acquired through THz time-domain spectroscopy (THz-TDS). Compared to the current mixed medium models, the new effective Debye theorem predicts the dielectric properties of polar solutions more accurately and has the potential to explain inter-species mixing schemes and interactions.
有许多有效的介质模型能够准确描述混合物的介电特性。然而,这些模型假定各组分之间不相互作用。这一假设对于极性液体溶液并不成立,导致混合物复折射率的测量值与理论预测值之间存在显著偏差。我们通过扩展著名的德拜弛豫模型,针对太赫兹(THz)波段的极性液体溶液提出了三种有效介质理论。本文提出的新有效介质模型基于每种混合物的协同运动动力学和自缔合特性预测各个弛豫德拜参数,因此解释了溶液介电函数与传统有效介质模型的偏差。通过太赫兹时域光谱(THz-TDS)对四种酒精-水溶液进行反射测量,验证了这些模型。与当前的混合介质模型相比,新的有效德拜定理能更准确地预测极性溶液的介电特性,并且有潜力解释物种间的混合方案和相互作用。