CENTRO DE INVESTIGACIÓN EN QUÍMICA SOSTENIBLE
Research center
Universidad Complutense de Madrid
Madrid, España
2026
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The late Ediacaran to early Cambrian subduction-related granitic magmatism of the Pampean orogen: Geochemical and isotopic constraints on hybridization processes
Gondwana Research, Vol. 150, pp. 228-253
2025
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Adakitic magmatism at the birth of the large Achala Intrusive Complex: Evidence of a thickened crust at the onset of Devonian foreland magmatism of SW Gondwana margin
Lithos, Vol. 510-511
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Dissociation Line and Driving Force for Nucleation of the Multiple Occupied Hydrogen Hydrate from Computer Simulation
Energy and Fuels, Vol. 39, Núm. 31, pp. 15184-15197
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Felsic magmatism and hydrothermal activity of the Central Igneous Complex of Boa Vista (Cape Verde islands): Insights from zircon, titanite and apatite geochronology
Chemical Geology, Vol. 676
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Homogeneous nucleation rate of carbon dioxide hydrate formation under experimental condition from Seeding simulations
Journal of Chemical Physics, Vol. 162, Núm. 13
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Solid-Liquid Interfacial Free Energy from Computer Simulations: Challenges and Recent Advances
Chemical Reviews, Vol. 125, Núm. 10, pp. 5003-5053
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The old central igneous complexes of Sal, Boa Vista and Maio islands: Implications for 17 Ma of isotopic evolution of the Cape Verde archipelago
Lithos, Vol. 498-499
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Three-Phase Equilibria of CO2 Hydrate from Computer Simulation in the Presence of NaCl
Energy and Fuels, Vol. 39, Núm. 11, pp. 5522-5533
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Three-Phase Equilibria of CO2 Hydrate from Computer Simulation in the Presence of NaCl
Energy and Fuels
2024
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A conceptual model for the evolution of a magmatic system based on U-Pb zircon studies on the Devonian granites of Sierra de San Luis, Argentina
International Geology Review, Vol. 66, Núm. 9, pp. 1794-1814
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Alkaline Devonian magmatism of the Menorca Island: Tracking the mantle isotopic sources in the realm of the western Paleo-Tethys Ocean
Chemical Geology, Vol. 669
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Three-phase equilibria of hydrates from computer simulation. I. Finite-size effects in the methane hydrate
The Journal of chemical physics, Vol. 160, Núm. 16
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Three-phase equilibria of hydrates from computer simulation. II. Finite-size effects in the carbon dioxide hydrate
The Journal of chemical physics, Vol. 160, Núm. 16
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Three-phase equilibria of hydrates from computer simulation. III. Effect of dispersive interactions in the methane and carbon dioxide hydrates
The Journal of chemical physics, Vol. 160, Núm. 16
2023
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Comments on Bahlburg (2021), A Silurian-Devonian active margin in the proto- Andes –new data on an old conundrum: International Geology Review doi.org/10.1080/00206814.2021.2012719
International Geology Review, Vol. 65, Núm. 3, pp. 489-490
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Exploring paleoproterozoic metamorphism in the western Río de la Plata craton from drill-core evidence
Journal of South American Earth Sciences, Vol. 131
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Homogeneous nucleation rate of methane hydrate formation under experimental conditions from seeding simulations
Journal of Chemical Physics, Vol. 158, Núm. 11
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Solubility of carbon dioxide in water: Some useful results for hydrate nucleation
Journal of Chemical Physics, Vol. 158, Núm. 18
2022
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Solubility of Methane in Water: Some Useful Results for Hydrate Nucleation
The journal of physical chemistry. B, Vol. 126, Núm. 42, pp. 8553-8570
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The Andaluca plutonic unit, Vinquis Intrusive Complex, Argentina: An assessment of mantle role in the genesis of Early Carboniferous weakly peraluminous A-type granites in the pre-Andean SW Gondwana margin
Lithos, Vol. 434-435