XAVIER
PAREDES MENDEZ
INVESTIGADOR POSDOCTORAL MARIA ZAMBRANO
Universidade de Santiago de Compostela
Santiago de Compostela, EspañaPublications en collaboration avec des chercheurs de Universidade de Santiago de Compostela (17)
2022
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Thermophysical and Tribological Properties of Highly Viscous Biolubricants
Industrial and Engineering Chemistry Research, Vol. 61, Núm. 23, pp. 8346-8356
2018
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Viscosity-pressure dependence for nanostructured ionic liquids. Experimental values for butyltrimethylammonium and 1-butyl-3-methylpyridinium bis(trifluoromethylsulfonyl)imide
Journal of Chemical Thermodynamics, Vol. 121, pp. 27-38
2014
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Bulk and liquid-vapor interface of pyrrolidinium-based ionic liquids: A molecular simulation study
Journal of Physical Chemistry B, Vol. 118, Núm. 3, pp. 731-742
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High pressure viscosity characterization of four vegetable and mineral hydraulic oils
Industrial Crops and Products, Vol. 54, pp. 281-290
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Pressure-viscosity behaviour and film thickness in elastohydrodynamic regime of lubrication of ionic liquids and other base oils
Lubrication Science, Vol. 26, Núm. 7-8, pp. 449-462
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Reference Correlations for the Density and Viscosity of Squalane from 273 to 473 K at Pressures to 200 MPa
Journal of Physical and Chemical Reference Data, Vol. 43, Núm. 1
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Viscosity measurements for squalane at high pressures to 350 MPa from T = (293.15 to 363.15) K
Journal of Chemical Thermodynamics, Vol. 69, pp. 201-208
2013
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Pressure dependence on the viscosities of 1-butyl-2,3-dimethylimidazolium bis(trifluoromethylsulfonyl)imide and two tris(pentafluoroethyl) trifluorophosphate based ionic liquids: New measurements and modelling
Journal of Chemical Thermodynamics, Vol. 62, pp. 162-169
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Reference Correlation of the Viscosity of Squalane from 273 to 373 K at 0.1 MPa
Journal of Physical and Chemical Reference Data, Vol. 42, Núm. 3
2012
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Effect of the pressure on the viscosities of ionic liquids: Experimental values for 1-ethyl-3-methylimidazolium ethylsulfate and two bis(trifluoromethyl- sulfonyl)imide salts
Journal of Chemical Thermodynamics, Vol. 54, pp. 302-309
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Experimental density and viscosity measurements of di(2ethylhexyl)sebacate at high pressure
Journal of Chemical Thermodynamics, Vol. 44, Núm. 1, pp. 38-43
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Pressure-viscosity coefficients for polyalkylene glycol oils and other ester or ionic lubricants
Tribology Letters, Vol. 45, Núm. 1, pp. 89-100
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Using molecular simulation to understand the structure of [C 2C1im]+-alkylsulfate ionic liquids: Bulk and liquid-vapor interfaces
Journal of Physical Chemistry B, Vol. 116, Núm. 48, pp. 14159-14170
2010
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Experimental dynamic viscosities of dipentaerythritol ester lubricants at high pressure
Journal of Chemical and Engineering Data, Vol. 55, Núm. 9, pp. 3216-3223
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How pressure affects the dynamic viscosities of two poly(propylene glycol) dimethyl ether lubricants
Journal of Chemical and Engineering Data, Vol. 55, Núm. 9, pp. 4088-4094
2009
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Study of the effects of pressure on the viscosity and density of diisodecyl phthalate
Journal of Chemical Thermodynamics, Vol. 41, Núm. 9, pp. 1007-1015
2008
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Phase and volumetric behavior of binary systems containing carbon dioxide and lubricants for transcritical refrigeration cycles
Journal of Supercritical Fluids, Vol. 45, Núm. 3, pp. 261-271