Jorge
Morales Vilanova
Universidade de Vigo
Vigo, EspañaPublicaciones en colaboración con investigadores/as de Universidade de Vigo (23)
2016
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Electrical percolation of AOT-based microemulsions with n-alcohols
Journal of Molecular Liquids, Vol. 215, pp. 18-23
2015
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Alkaline hydrolysis of vinclozolin: Effect of humic acids aggregates in water
Journal of Molecular Catalysis A: Chemical, Vol. 401, pp. 13-17
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Cleavage of carbofuran and carbofuran-derivatives in micellar aggregates
Progress in Reaction Kinetics and Mechanism, Vol. 40, Núm. 2, pp. 105-118
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Density prediction of ternary mixtures of ethanol + water + ionic liquid using backpropagation artificial neural networks
Ionic liquid-based surfactant science: formulation, characterization and applications (John Wiley & Sons (USA)), pp. 447-458
2014
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Thermodynamics of sodium dodecyl sulphate-salicylic acid based micellar systems and their potential use in fruits postharvest
Food Chemistry, Vol. 151, pp. 358-363
2013
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Percolation threshold of AOT microemulsions with n-alkyl acids as additives prediction by means of artificial neural networks
Tenside, Surfactants, Detergents, Vol. 50, Núm. 5, pp. 360-368
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Prediction of the penetration of drugs by artificial neural networks
Iberian Conference on Information Systems and Technologies, CISTI
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Stability of humic substances self-assembly aggregates in the presence of pesticides
Fresenius Environmental Bulletin, Vol. 22, Núm. 10 A, pp. 3065-3069
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Stability study of Iprodione in alkaline media in the presence of humic acids
Chemosphere, Vol. 92, Núm. 11, pp. 1536-1541
2012
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Basic hydrolysis of carbofuran in the presence of cyclodextrins
Supramolecular Chemistry, Vol. 24, Núm. 6, pp. 399-405
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Degradation of carbofuran and carbofuran-derivatives in presence of humic substances under basic conditions
Chemosphere, Vol. 89, Núm. 11, pp. 1267-1271
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Degradation of carbofuran derivatives in restricted water environments: Basic hydrolysis in AOT-based microemulsions
Journal of Colloid and Interface Science, Vol. 372, Núm. 1, pp. 113-120
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Predicción de la temperatura superior de disolución crítica mediante redes neuronales artificiales
Revista Iberoamericana de Polímeros, Vol. 13, Núm. 6, pp. 295-306
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Starch-derived cyclodextrins and ttheir future in the food biopolymer industry
Starch-Based Polymeric Materials and Nanocomposites: Chemistry, Processing, and Applications (CRC Press), pp. 167-182
2011
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Alkaline fading of triarylmethyl carbocations in self-assembly microheterogeneous media
Progress in Reaction Kinetics and Mechanism, Vol. 36, Núm. 2, pp. 139-165
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Basic degradation of 3-keto-carbofuran in the presence of non-ionic self-assembly colloids
Fresenius Environmental Bulletin, Vol. 20, Núm. 2, pp. 354-357
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Influence of anionic and nonionic micelles upon hydrolysis of 3-hydroxy-carbofuran
International Journal of Chemical Kinetics, Vol. 43, Núm. 8, pp. 402-408
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N-alkylamines-based micelles aggregation number determination by fluorescence techniques
Journal of Solution Chemistry, Vol. 40, Núm. 12, pp. 2072-2081
2010
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Cyclodextrin-surfactant mixed systems as reaction media
Progress in Reaction Kinetics and Mechanism, Vol. 35, Núm. 2, pp. 105-129
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Factors controlling flavors binding constants to cyclodextrins and their applications in foods
Food Research International, Vol. 43, Núm. 4, pp. 1212-1218