Juliana Carneiro

Affiliations: 
Wayne State University, Detroit, MI, United States 
Area:
Catalysis, Electrocatalysis
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"Juliana Carneiro"
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Publications

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Guta YA, Carneiro J, Li S, et al. (2023) Contributions of CO, O, and HO to the Oxidative Stability of Solid Amine Direct Air Capture Sorbents at Intermediate Temperature. Acs Applied Materials & Interfaces
Carneiro JSA, Innocenti G, Moon HJ, et al. (2023) Insights into the Oxidative Degradation Mechanism of Solid Amine Sorbents for CO2 Capture from Air: Roles of Atmospheric Water. Angewandte Chemie (International Ed. in English). e202302887
Carneiro J, Gu X, Tezel E, et al. (2020) Electrochemical Reduction of CO2 on Metal-Based Cathode Electrocatalysts of Solid Oxide Electrolysis Cells Industrial & Engineering Chemistry Research. 59: 15884-15893
Carneiro J, Nikolla E. (2019) Electrochemical Conversion of Biomass-Based Oxygenated Compounds. Annual Review of Chemical and Biomolecular Engineering. 10: 85-104
Carneiro JSA, Williams J, Gryko A, et al. (2019) Embracing the Complexity of Catalytic Structures: A Viewpoint on the Synthesis of Nonstoichiometric Mixed Metal Oxides for Catalysis Acs Catalysis. 10: 516-527
Carneiro J, Nikolla E. (2019) Nanoengineering of solid oxide electrochemical cell technologies: An outlook Nano Research. 12: 2081-2092
Gu XK, Carneiro JSA, Samira S, et al. (2018) Efficient Oxygen Electrocatalysis By Nanostructured Mixed Metal Oxides. Journal of the American Chemical Society
Gu X, Carneiro JSA, Nikolla E. (2017) First-Principles Study of High Temperature CO2 Electrolysis on Transition Metal Electrocatalysts Industrial & Engineering Chemistry Research. 56: 6155-6163
Carneiro JSA, Brocca RA, Lucena MLRS, et al. (2017) Optimizing cathode materials for intermediate-temperature solid oxide fuel cells (SOFCs): Oxygen reduction on nanostructured lanthanum nickelate oxides Applied Catalysis B: Environmental. 200: 106-113
Ma X, Carneiro JSA, Gu XK, et al. (2015) Engineering Complex, Layered Metal Oxides: High-Performance Nickelate Oxide Nanostructures for Oxygen Exchange and Reduction Acs Catalysis. 5: 4013-4019
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