Borja Docampo-Álvarez
University of Santiago de Compostela
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Featured researches published by Borja Docampo-Álvarez.
Journal of Chemical Physics | 2014
Borja Docampo-Álvarez; Víctor Gómez-González; Trinidad Méndez-Morales; Jesús Carrete; Julio R. Rodríguez; Oscar Cabeza; L. J. Gallego; Luis M. Varela
In this work, the effect of molecular cosolvents (water, ethanol, and methanol) on the structure of mixtures of these compounds with a protic ionic liquid (ethylammonium nitrate) is analyzed by means of classical molecular dynamics simulations. Included are as-yet-unreported measurements of the densities of these mixtures, used to test our parameterized potential. The evolution of the structure of the mixtures throughout the concentration range is reported by means of the calculation of coordination numbers and the fraction of hydrogen bonds in the system, together with radial and spatial distribution functions for the various molecular species and molecular ions in the mixture. The overall picture indicates a homogeneous mixing process of added cosolvent molecules, which progressively accommodate themselves in the network of hydrogen bonds of the protic ionic liquid, contrarily to what has been reported for their aprotic counterparts. Moreover, no water clustering similar to that in aprotic mixtures is detected in protic aqueous mixtures, but a somehow abrupt replacing of [NO3](-) anions in the first hydration shell of the polar heads of the ionic liquid cations is registered around 60% water molar concentration. The spatial distribution functions of water and alcohols differ in the coordination type, since water coordinates with [NO3](-) in a bidentate fashion in the equatorial plane of the anion, while alcohols do it in a monodentate fashion, competing for the oxygen atoms of the anion. Finally, the collision times of the different cosolvent molecules are also reported by calculating their velocity autocorrelation functions, and a caging effect is observed for water molecules but not in alcohol mixtures.
Journal of Physics: Condensed Matter | 2016
Borja Docampo-Álvarez; Gomez-Gonzalez; H Montes-Campos; Jm Otero-Mato; Trinidad Méndez-Morales; Oscar Cabeza; L. J. Gallego; R. M. Lynden-Bell; Vladislav Ivaništšev; Mikhail V. Fedorov; Luis M. Varela
This work describes the behaviour of water molecules in 1-butyl-3-methylimidazolium tetrafluoroborate ionic liquid under nanoconfinement, between graphene sheets. By means of molecular dynamics simulations, the adsorption of water molecules at the graphene surface is studied. A depletion of water molecules in the vicinity of the neutral and negatively charged graphene surfaces, and their adsorption at the positively charged surface are observed in line with the preferential hydration of the ionic liquid anions. The findings are appropriately described using a two-level statistical model. The confinement effect on the structure and dynamics of the mixtures is thoroughly analyzed using the density and the potential of mean force profiles, as well as by the vibrational densities of the states of water molecules near the graphene surface. The orientation of water molecules and the water-induced structural transitions in the layer closest to the graphene surface are also discussed.
Journal of Chemical Physics | 2015
Víctor Gómez-González; Borja Docampo-Álvarez; Oscar Cabeza; Maxim V. Fedorov; R. M. Lynden-Bell; L. J. Gallego; Luis M. Varela
We report a molecular dynamics study of the structure and single-particle dynamics of mixtures of a protic (ethylammonium nitrate) and an aprotic (1-butyl-3-methylimidazolium hexaflurophosphate [BMIM][PF6]) room-temperature ionic liquids doped with magnesium and calcium salts with a common anion at 298.15 K and 1 atm. The solvation of these divalent cations in dense ionic environments is analyzed by means of apparent molar volumes of the mixtures, radial distribution functions, and coordination numbers. For the protic mixtures, the effect of salt concentration on the network of hydrogen bonds is also considered. Moreover, single-particle dynamics of the salt cations is studied by means of their velocity autocorrelation functions and vibrational densities of states, explicitly analyzing the influence of salt concentration, and cation charge and mass on these magnitudes. The effect of the valency of the salt cation on these properties is considered comparing the results with those for the corresponding mixtures with lithium salts. We found that the main structural and dynamic features of the local solvation of divalent cations in ionic liquids are similar to those of monovalent salts, with cations being localized in the polar nanoregions of the bulk mixture coordinated in monodentate and bidentate coordination modes by the [NO3](-) and [PF6](-) anions. However, stronger electrostatic correlations of these polar nanoregions than in mixtures with salts with monovalent cations are found. The vibrational modes of the ionic liquid (IL) are seen to be scarcely affected by the addition of the salt, and the effect of mass and charge on the vibrational densities of states of the dissolved cations is reported. Cation mass is seen to exert a deeper influence than charge on the low-frequency vibrational spectra, giving a red shift of the vibrational modes and a virtual suppression of the higher energy vibrational modes for the heavier Ca(2+) cations. No qualitative difference with monovalent cations was found in what solvation is concerned, which suggests that no enhanced reduction of the mobility of these cations and their complexes in ILs respective to those of monovalent cations is to be expected.
Journal of Molecular Liquids | 2015
Luis M. Varela; Trinidad Méndez-Morales; Jesús Carrete; Víctor Gómez-González; Borja Docampo-Álvarez; L. J. Gallego; O. Cabeza; Olga Russina
Physical Chemistry Chemical Physics | 2017
Víctor Gómez-González; Borja Docampo-Álvarez; Trinidad Méndez-Morales; Oscar Cabeza; Vladislav Ivaništšev; Maxim V. Fedorov; L. J. Gallego; Luis M. Varela
Physical Chemistry Chemical Physics | 2016
Borja Docampo-Álvarez; Víctor Gómez-González; Trinidad Méndez-Morales; Julio R. Rodríguez; Elena López-Lago; Oscar Cabeza; L. J. Gallego; Luis M. Varela
Physical Chemistry Chemical Physics | 2018
Víctor Gómez-González; Borja Docampo-Álvarez; Hadrián Montes-Campos; Juan C. Otero; Elena López Lago; Oscar Cabeza; L. J. Gallego; Luis M. Varela
Physical Chemistry Chemical Physics | 2018
Borja Docampo-Álvarez; Víctor Gómez-González; Trinidad Méndez-Morales; Julio R. Rodríguez; Oscar Cabeza; Mireille Turmine; L. J. Gallego; Luis M. Varela
Physical Chemistry Chemical Physics | 2018
Víctor Gómez-González; Borja Docampo-Álvarez; J. Manuel Otero-Mato; Oscar Cabeza; L. J. Gallego; Luis M. Varela
Physical Chemistry Chemical Physics | 2018
Esther Heid; Borja Docampo-Álvarez; Luis M. Varela; Konstantin Prosenz; Othmar Steinhauser; Christian Schröder