Literature DB >> 34241035

How sensitive are physical properties of choline chloride-urea mixtures to composition changes: Molecular dynamics simulations and Kirkwood-Buff theory.

Alper T Celebi1, Noura Dawass1, Othonas A Moultos1, Thijs J H Vlugt1.   

Abstract

Deep eutectic solvents (DESs) have emerged as a cheaper and greener alternative to conventional organic solvents. Choline chloride (ChCl) mixed with urea at a molar ratio of 1:2 is one of the most common DESs for a wide range of applications such as electrochemistry, material science, and biochemistry. In this study, molecular dynamics simulations are performed to study the effect of urea content on the thermodynamic and transport properties of ChCl and urea mixtures. With increased mole fraction of urea, the number of hydrogen bonds (HBs) between cation-anion and ion-urea decreases, while the number of HBs between urea-urea increases. Radial distribution functions (RDFs) for ChCl-urea and ChCl-ChCl pairs shows a significant decrease as the mole fraction of urea increases. Using the computed RDFs, Kirkwood-Buff Integrals (KBIs) are computed. KBIs show that interactions of urea-urea become stronger, while interactions of urea-ChCl and ChCl-ChCl pairs become slightly weaker with increasing mole fraction of urea. All thermodynamic factors are found larger than one, indicating a non-ideal mixture. Our results also show that self- and collective diffusivities increase, while viscosities decrease with increasing urea content. This is mainly due to the weaker interactions between ions and urea, resulting in enhanced mobilities. Ionic conductivities exhibit a non-monotonic behavior. Up to a mole fraction of 0.5, the ionic conductivities increase with increasing urea content and then reach a plateau.

Entities:  

Year:  2021        PMID: 34241035     DOI: 10.1063/5.0049064

Source DB:  PubMed          Journal:  J Chem Phys        ISSN: 0021-9606            Impact factor:   3.488


  3 in total

Review 1.  Computer Simulations of Deep Eutectic Solvents: Challenges, Solutions, and Perspectives.

Authors:  Dmitry Tolmachev; Natalia Lukasheva; Ruslan Ramazanov; Victor Nazarychev; Natalia Borzdun; Igor Volgin; Maria Andreeva; Artyom Glova; Sofia Melnikova; Alexey Dobrovskiy; Steven A Silber; Sergey Larin; Rafael Maglia de Souza; Mauro Carlos Costa Ribeiro; Sergey Lyulin; Mikko Karttunen
Journal:  Int J Mol Sci       Date:  2022-01-07       Impact factor: 5.923

2.  Solubilities and Transport Properties of CO2, Oxalic Acid, and Formic Acid in Mixed Solvents Composed of Deep Eutectic Solvents, Methanol, and Propylene Carbonate.

Authors:  Noura Dawass; Jilles Langeveld; Mahinder Ramdin; Elena Pérez-Gallent; Angel A Villanueva; Erwin J M Giling; Jort Langerak; Leo J P van den Broeke; Thijs J H Vlugt; Othonas A Moultos
Journal:  J Phys Chem B       Date:  2022-05-04       Impact factor: 3.466

3.  Neutron Diffraction Study of Indole Solvation in Deep Eutectic Systems of Choline Chloride, Malic Acid, and Water.

Authors:  Oliver S Hammond; Ria Atri; Daniel T Bowron; Karen J Edler
Journal:  Chemistry       Date:  2022-06-13       Impact factor: 5.020

  3 in total

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