Proyecto de Investigación
Proyecto BU094G18
MODELIZACIÓN TEÓRICA DE DISOLVENTES EUTÉCTIVOS PARA EL DISEÑO DE PROCESOS DE SEPARACIÓN SOSTENIBLES
Financiador:
CONSEJERIA DE EDUCACION
date_range
Duración del 05 de junio de 2018 al 30 de septiembre de 2020
(28 meses)
Finalizó
euro
12.000,00 EUR
De ámbito Autonómico.
Convocatoria:
(CONSEJERIA DE EDUCACION)
Subprograma:
PLAN AUTONOMICO DE PROYECTOS DE INVESTIGACION
Investigadores/as
Componentes en otros momentos (1)
- APARICIO MARTINEZ, SANTIAGO Responsable 20182018
Publicaciones relacionadas con el proyecto (14)
Mostrar por tipología2021
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Experimental and molecular modeling study on the binary mixtures of [EMIM][BF4] and [EMIM][TFSI] ionic liquids
Journal of Molecular Liquids
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Insights on biodiesel blends with alkanol solvents
Journal of Molecular Liquids
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Nanoscopic characterization of type II porous liquid and its use for CO2 absorption from molecular simulation
Journal of Molecular Liquids
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On the properties of N-methyl-2-pyrrolidonium hydrogen sulfate ionic liquid and alkanol mixtures
Journal of Molecular Liquids
2020
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Behavior of Antibiotics in Natural Deep Eutectic Solvents
Journal of Chemical and Engineering Data
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Deep Eutectic Solvent Reline at 2D Nanomaterial Interfaces
Journal of Physical Chemistry B
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High-pressure behavior of 2-hydroxyethylammonium acetate ionic liquid: Experiment and molecular dynamics
Journal of Supercritical Fluids
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Insights on (C, BN, Si, Ge, MoS2) Nanotubes in Reline Deep Eutectic Solvent
Journal of Physical Chemistry B
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Insights on Betaine + Lactic Acid Deep Eutectic Solvent
Industrial and Engineering Chemistry Research
-
Intermolecular forces in pyrrolidones + 1,2-alkanediol liquid mixtures
Journal of Molecular Liquids
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Single atom transition metals on MoS2 monolayer and their use as catalysts for CO2 activation
Applied Surface Science
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Theoretical Study on Deep Eutectic Solvents as Vehicles for the Delivery of Anesthetics
Journal of Physical Chemistry B
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Theoretical study of hydrogen bonding in complex alcohol liquid mixtures
Journal of Molecular Liquids
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Thermal conductivity and structuring of multiwalled carbon nanotubes based nanofluids
Journal of Molecular Liquids