Sofia Calero, Full Professor

Sistemas Físicos, Químicos y Naturales University Pablo de Olavide 
Molecular Simulation, Adsorption, Diffusion, Materials
"Sofia Calero"

Cross-listing: Chemistry Tree


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Berend Smit post-doc 2000-2003 Amsterdam (Chemistry Tree)
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Jajko G, Sevillano JJG, Calero S, et al. (2023) The Boost of Toluene Capture in UiO-66 Triggered by Structural Defects or Air Humidity. The Journal of Physical Chemistry Letters. 14: 5618-5623
Madero-Castro RM, Luna-Triguero A, Sławek A, et al. (2023) On the Use of Water and Methanol with Zeolites for Heat Transfer. Acs Sustainable Chemistry & Engineering. 11: 4317-4328
Jajko G, Calero S, Kozyra P, et al. (2022) Defect-induced tuning of polarity-dependent adsorption in hydrophobic-hydrophilic UiO-66. Communications Chemistry. 5: 120
Wasik DO, Polat HM, Ramdin M, et al. (2022) Solubility of CO in Aqueous Formic Acid Solutions and the Effect of NaCl Addition: A Molecular Simulation Study. The Journal of Physical Chemistry. C, Nanomaterials and Interfaces. 126: 19424-19434
Polat HM, Salehi HS, Hens R, et al. (2021) New Features of the Open Source Monte Carlo Software Brick-CFCMC: Thermodynamic Integration and Hybrid Trial Moves. Journal of Chemical Information and Modeling
Jajko G, Kozyra P, Gutiérrez-Sevillano JJ, et al. (2021) Carbon dioxide capture enhanced by pre-adsorption of water and methanol in UiO-66. Chemistry (Weinheim An Der Bergstrasse, Germany)
Erdős M, Geerdink DF, Martin-Calvo A, et al. (2021) In Silico Screening of Zeolites for High-Pressure Hydrogen Drying. Acs Applied Materials & Interfaces
Rogacka J, Seremak A, Luna-Triguero A, et al. (2021) High-throughput screening of metal – Organic frameworks for CO2 and CH4 separation in the presence of water Chemical Engineering Journal. 403: 126392
Luna-Triguero A, Vicent-Luna J, Jansman M, et al. (2021) Enhancing separation efficiency in European syngas industry by using zeolites Catalysis Today. 362: 113-121
Del Monte F, Lu X, Vicent-Luna JM, et al. (2020) Aqueous cosolvent in Zwitterionic-based PILs as Electrolytes in 2.0 V Supercapacitors. Chemsuschem
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