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氯化胆碱及其与水的固液平衡的广泛表征。

Extensive characterization of choline chloride and its solid-liquid equilibrium with water.

作者信息

Lobo Ferreira Ana I M C, Vilas-Boas Sérgio M, Silva Rodrigo M A, Martins Mónia A R, Abranches Dinis O, Soares-Santos Paula C R, Almeida Paz Filipe A, Ferreira Olga, Pinho Simão P, Santos Luís M N B F, Coutinho João A P

机构信息

CIQUP, Institute of Molecular Sciences (IMS) - Departamento de Química e Bioquímica, Faculdade de Ciências da Universidade do Porto, Rua Campo Alegre, 4169-007 Porto, Portugal.

Centro de Investigação de Montanha (CIMO), Instituto Politécnico de Bragança, Campus de Santa Apolónia, 5300-253 Bragança, Portugal.

出版信息

Phys Chem Chem Phys. 2022 Jun 22;24(24):14886-14897. doi: 10.1039/d2cp00377e.

Abstract

The importance of choline chloride (ChCl) is recognized due to its widespread use in the formulation of deep eutectic solvents. The controlled addition of water in deep eutectic solvents has been proposed to overcome some of the major drawbacks of these solvents, namely their high hygroscopicities and viscosities. Recently, aqueous solutions of ChCl at specific mole ratios have been presented as a novel, low viscous deep eutectic solvent. Nevertheless, these proposals are suggested without any information about the solid-liquid phase diagram of this system or the deviations from the thermodynamic ideality of its precursors. This work contributes significantly to this matter as the phase behavior of pure ChCl and (ChCl + HO) binary mixtures was investigated by calorimetric and analytical techniques. The thermal behavior and stability of ChCl were studied by polarized light optical microscopy and differential scanning calorimetry, confirming the existence of a solid-solid transition at 352.2 ± 0.6 K. Additionally, heat capacity measurements of pure ChCl (covering both ChCl solid phases) and aqueous solutions of ChCl ( < 0.4) were performed using a heat-flow differential scanning microcalorimeter or a high-precision heat capacity drop calorimeter, allowing the estimation of a heat capacity change of (ChCl) ≈ 39.3 ± 10 J K mol, between the hypothetical liquid and the observed crystalline phase at 298.15 K. The solid-liquid phase diagram of the ChCl + water mixture was investigated in the whole concentration range by differential scanning calorimetry and the analytical shake-flask method. The phase diagram obtained for the mixture shows an eutectic temperature of 204 K, at a mole fraction of choline chloride close to = 0.2, and a shift of the solid-solid transition of ChCl-water mixtures of 10 K below the value observed for pure choline chloride, suggesting the appearance of a new crystalline structure of ChCl in the presence of water, as confirmed by X-ray diffraction. The liquid phase presents significant negative deviations to ideality for water while COSMO-RS predicts a near ideal behaviour for ChCl.

摘要

由于氯化胆碱(ChCl)在深共熔溶剂配方中的广泛应用,其重要性已得到认可。有人提出在深共熔溶剂中控制添加水,以克服这些溶剂的一些主要缺点,即它们的高吸湿性和高粘度。最近,特定摩尔比的ChCl水溶液已被视为一种新型的低粘度深共熔溶剂。然而,提出这些建议时,没有关于该体系固液相图或其前体偏离热力学理想状态的任何信息。这项工作对这一问题有重大贡献,因为通过量热和分析技术研究了纯ChCl和(ChCl + HO)二元混合物的相行为。通过偏光光学显微镜和差示扫描量热法研究了ChCl的热行为和稳定性,证实了在352.2 ± 0.6 K存在固-固转变。此外,使用热流差示扫描微量量热计或高精度热容滴定量热计对纯ChCl(涵盖两种ChCl固相)和ChCl水溶液(< 0.4)进行了热容测量,从而能够估算在298.15 K时,假设液体与观察到的结晶相之间(ChCl)的热容变化约为39.3 ± 10 J K mol。通过差示扫描量热法和分析摇瓶法在整个浓度范围内研究了ChCl + 水混合物的固液相图。该混合物的相图显示,在氯化胆碱摩尔分数接近 = 0.2时,共晶温度为2K,ChCl - 水混合物的固 - 固转变温度比纯氯化胆碱观察到的值低10K,这表明在有水存在的情况下ChCl出现了新的晶体结构,X射线衍射证实了这一点。液相对于水呈现出显著的负偏差,而COSMO - RS预测ChCl的行为接近理想状态。

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