DIEGO
GONZALEZ SALGADO
PROFESOR/A TITULAR DE UNIVERSIDAD TC
Luis
Romaní Martínez
Publicacións nas que colabora con Luis Romaní Martínez (40)
2020
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Temperature of maximum density of proteins in water: α-Chymotrypsin and bovine serum albumin
Journal of Chemical Thermodynamics, Vol. 142
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Volumetric and thermal excess properties of the {(1,2-dichloroethane or 1,4-dichlorobutane) + n-dodecane systems}
Journal of Chemical Thermodynamics, Vol. 141
2019
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Temperature of Maximum Density for Binary Aqueous Solutions of Five Amino Acids
Journal of Chemical and Engineering Data, Vol. 64, Núm. 12, pp. 5847-5856
2017
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Temperature of maximum density for aqueous mixtures of three pentanol isomers
Journal of Chemical Thermodynamics, Vol. 113, pp. 369-376
2015
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Experimental Techniques 2: Vibrating Tube Densimetry
VOLUME PROPERTIES: LIQUIDS, SOLUTIONS AND VAPOURS (ROYAL SOC CHEMISTRY), pp. 100-114
2013
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Association effects in pure methanol via Monte Carlo simulations. I. Structure
Journal of Chemical Physics, Vol. 138, Núm. 4
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Association effects in pure methanol via Monte Carlo simulations. II. Thermodynamics
Journal of Chemical Physics, Vol. 138, Núm. 4
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Association effects in the {methanol + inert solvent} system via Monte Carlo simulations. I. Structure
Journal of Chemical Physics, Vol. 138, Núm. 20
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Association effects in the {methanol + inert solvent} system via Monte Carlo simulations. II. Thermodynamics
Journal of Chemical Physics, Vol. 138, Núm. 20
2011
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A simple methodology for analyzing association effects on response functions via Monte Carlo simulations
Journal of Chemical Physics, Vol. 134, Núm. 1
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Erratum: A simple methodology for analyzing association effects on response functions via Monte Carlo simulations (Journal of Chemical Physics (2011) 134 (014512))
Journal of Chemical Physics
2010
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Experimental methodology for precise determination of density of RTILs as a function of temperature and pressure using vibrating tube densimeters
Journal of Chemical Thermodynamics, Vol. 42, Núm. 4, pp. 553-563
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Pressure and temperature dependence of isobaric heat capacity for [Emim][BF4], [Bmim][BF4], [Hmim][BF4], and [Omim][BF4]
Journal of Chemical and Engineering Data
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Unusual behavior of the thermodynamic response functions of ionic liquids
Journal of Physical Chemistry Letters, Vol. 1, Núm. 1, pp. 211-214
2009
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An accurate calibration method for high pressure vibrating tube densimeters in the density interval (700 to 1600) kg · m-3
Journal of Chemical Thermodynamics, Vol. 41, Núm. 9, pp. 1060-1068
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Thermophysical characterization of liquids using precise density and isobaric heat capacity measurements as a function of pressure
Journal of Chemical and Engineering Data, Vol. 54, Núm. 3, pp. 904-915
2008
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I&EC 85-Temperature and pressure dependencies of isobaric thermal expansivity and isobaric heat capacity of ionic liquids
ABSTRACTS OF PAPERS OF THE AMERICAN CHEMICAL SOCIETY
2007
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Densities, speeds of sound, and refractive indices of the ternary mixtures (toluene + methyl acetate + butyl acetate) and (toluene + methyl acetate + methyl heptanoate) at 298.15 K
Journal of Chemical Thermodynamics, Vol. 39, Núm. 2, pp. 218-224
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Heat capacity of associated systems. Experimental data and application of a two-state model to pure liquids and mixtures
Journal of Physical Chemistry B, Vol. 111, Núm. 5, pp. 1119-1128
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Highly precise experimental device for determining the heat capacity of liquids under pressure
Review of Scientific Instruments, Vol. 78, Núm. 5