Daniela E. Ortega

Affiliations: 
2017 Pontificia Universidad Catolica Chile 
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"Daniela Ortega"
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Publications

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Ortega DE, Cortés-Arriagada D. (2024) Interaction mechanism of water-soluble inorganic arsenic onto pristine nanoplastics. Chemosphere. 141147
Ortega DE, Cortés-Arriagada D, Araya-Hermosilla R. (2023) Computational Insights on the Chemical Reactivity of Functionalized and Crosslinked Polyketones to Cu Ion for Wastewater Treatment. Polymers. 15
Cortés-Arriagada D, Ortega DE. (2023) Interaction mechanism of triclosan on pristine microplastics. The Science of the Total Environment. 891: 164470
Cortés-Arriagada D, Ortega DE, Miranda-Rojas S. (2023) Mechanistic insights into the adsorption of endocrine disruptors onto polystyrene microplastics in water. Environmental Pollution (Barking, Essex : 1987). 319: 121017
Ortega DE, Cortés-Arriagada D. (2022) Atmospheric microplastics and nanoplastics as vectors of primary air pollutants - A theoretical study on the polyethylene terephthalate (PET) case. Environmental Pollution (Barking, Essex : 1987). 318: 120860
Cortés-Arriagada D, Miranda-Rojas S, Camarada MB, et al. (2022) The interaction mechanism of polystyrene microplastics with pharmaceuticals and personal care products. The Science of the Total Environment. 861: 160632
Ortega DE. (2021) Theoretical Insight into the Effect of Fluorine-Functionalized Metal-Organic Framework Supported Palladium Single-Site Catalyst in the Ethylene Dimerization Reaction. Chemistry (Weinheim An Der Bergstrasse, Germany)
Ortega DE, Matute RA. (2020) Description of the Reaction Intermediate Stabilization for the Zimmerman Di-π-Methane Rearrangement on the Basis of a Parametric Diabatic Analysis. The Journal of Physical Chemistry. A
Cortés-Arriagada D, Ortega DE. (2020) Exploring the Nature of Interaction and Stability between Water-Soluble Arsenic Pollutants and Metal-Phosphorene Hybrids: A DFT Study. The Journal of Physical Chemistry. A
Ortega DE, Matute RA, Toro-Labbé A. (2020) Exploring the Nature of the Energy Barriers on the Mechanism of the Zirconocene-Catalyzed Ethylene Polymerization: A Quantitative Study from Reaction Force Analysis The Journal of Physical Chemistry C. 124: 8198-8209
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