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氯化胆碱/丙酮酸低共熔溶剂中的水合作用和谐:来自分子动力学的见解

Hydration Harmony in Choline Chloride/Pyruvic Acid Deep Eutectic Solvent: Insights from Molecular Dynamics.

作者信息

Chenthamara Baiju, Mudedla Sathish Kumar, Subramanian Venkatesan, Gardas Ramesh L

机构信息

Department of Chemistry, Indian Institute of Technology Madras, Chennai, Tamil Nadu 600036, India.

Medicinal and Process Chemistry Division, Council of Scientific and Industrial Research-Central Drug Research Institute (CSIR-CDRI), Lucknow, Uttar Pradesh 226031, India.

出版信息

J Phys Chem B. 2025 Jun 26. doi: 10.1021/acs.jpcb.5c01073.

Abstract

Deep eutectic solvents (DESs) are innovative solvents that are revolutionizing green chemistry with their versatile properties, enabling sustainable transformations and cutting-edge technological advancements. Many choline chloride (ChCl)/carboxylic acid eutectic mixtures are hygroscopic and exhibit elevated viscosity due to strong hydrogen-bonding interactions. Even small amounts of water can significantly reduce their viscosity by disrupting the hydrogen bond network and promoting the formation of distinct DES-HO nanoclusters. This study examines the impact of water on HBA-HBD cluster formation within a 1:1 ChCl and pyruvic acid (PA) eutectic mixture across hydration levels ranging from 0 to 80 wt % through molecular dynamics (MD) simulations. The study initially investigated the role of hydrogen bonding among all components in both neat and hydrated DES systems through radial distribution functions (RDFs), hydrogen bond (HB) analysis, and free energy landscape (FEL) evaluations. In particular, the findings revealed that the hydrated eutectic mixture mainly forms two competing molecular structures, HO-in-DES and DES-in-HO structures, whose relative distribution varies within the hydration range of 0-25 wt %, with full solvation ultimately achieved at a hydration level of 50 wt %. Subsequent analysis of the self-diffusion coefficients () revealed two distinct trends below and above 25 wt % hydration, highlighting the structural stability of the hydrated eutectic system up to this critical point. Below 25 wt %, Ch shows the highest D values compared to Cl and PA. However, beyond this hydration level, the diffusion coefficients of Ch and Cl begin to converge, while HO consistently exhibits significantly higher mobility. This observation is further validated by experimental data on the density and ionic conductivity as functions of the DES mole fraction. The analysis was further advanced to determine shear viscosity using both the Green-Kubo formalism and Einstein relation, with the viscosity values derived from the Einstein relation showing close agreement with the experimental data.

摘要

深共熔溶剂(DESs)是一种创新型溶剂,凭借其多样的性质正在革新绿色化学,推动可持续转化和前沿技术进步。许多氯化胆碱(ChCl)/羧酸共熔混合物具有吸湿性,且由于强烈的氢键相互作用而表现出较高的粘度。即使少量的水也能通过破坏氢键网络并促进形成独特的DES - HO纳米团簇,从而显著降低其粘度。本研究通过分子动力学(MD)模拟,考察了水对1:1的ChCl与丙酮酸(PA)共熔混合物在0至80 wt%水合水平范围内HBA - HBD团簇形成的影响。该研究最初通过径向分布函数(RDFs)、氢键(HB)分析和自由能景观(FEL)评估,研究了纯DES系统和水合DES系统中所有组分之间氢键的作用。特别地,研究结果表明,水合共熔混合物主要形成两种相互竞争的分子结构,即HO - in - DES和DES - in - HO结构,其相对分布在0 - 25 wt%的水合范围内变化,最终在50 wt%的水合水平实现完全溶剂化。随后对自扩散系数()的分析揭示了水合水平低于和高于25 wt%时的两种不同趋势,突出了水合共熔体系在该临界点之前的结构稳定性。在低于25 wt%时,与Cl和PA相比,Ch显示出最高的D值。然而,超过该水合水平后,Ch和Cl的扩散系数开始趋同,而HO始终表现出显著更高的迁移率。关于密度和离子电导率作为DES摩尔分数函数的实验数据进一步验证了这一观察结果。分析进一步深入,使用格林 - 库博形式和爱因斯坦关系来确定剪切粘度,从爱因斯坦关系得出的粘度值与实验数据显示出密切的一致性。

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