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Jones Group

Chemical and Biomolecular Engineering at Georgia Tech

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Juliana Carneiro

Postdoctoral Research Fellow

Office: ES&T 1358
Email: juliana.carneiro@gatech.edu

Favorite Nobel Laureate? Donna Strickland and Frances H. Arnold
Favorite historical figure? Nelson Mandela

Educational Background

B.S. in Environmental Engineering, Universidade Tiradentes, Brazil 2011
Ph.D. in Chemical Engineering, Wayne State University, 2019

Project

Coming Soon!

Publications

‡ Equal contributions

    1. Carneiro, J. S., & Nikolla, E. (2020). Electrochemical reduction of CO2 on Metal-based Cathode Electrocatalysts of Solid Oxide Electrolysis Cells. In Preparation.
    2. Carneiro, J. S., Williams, J., Gryko, A., Herrera, L. P., & Nikolla, E. (2019). Embracing Complexity of Catalytic Structures: A Viewpoint on Synthesis of Non-Stoichiometric Mixed Metal Oxides for Catalysis. ACS Catalysis.
    3. Carneiro, J., & Nikolla, E. (2019). Electrochemical Conversion of Biomass-Based Oxygenated Compounds. Annual Review of Chemical and Biomolecular Engineering, 10, 85-104.
    4. Carneiro, J., & Nikolla, E. Nanoengineering of Solid Oxide Electrochemical Cell Technologies: An Outlook. Nano Research, 1-12.
    5. Gu X.‡, Carneiro J.‡, Samira, S., Das, A., Ariyasingha, N. M., & Nikolla, E. (2018). Efficient oxygen electrocatalysis by nanostructured mixed-metal oxides. Journal of the American Chemical Society, 140(26), 8128-8137.
    6. Gu, X. K. ‡, Carneiro, J. S. A. ‡, & Nikolla, E. (2017). Heterogeneous electrocatalysts for CO2 In Catalysis (pp. 94-121).
    7. Gu, X. K., Carneiro, J. S., & Nikolla, E. (2017). First-Principles Study of High Temperature CO2 Electrolysis on Transition Metal Electrocatalysts. Industrial & Engineering Chemistry Research, 56(21), 6155-6163.
    8. Carneiro, J. S. A., Brocca, R. A., Lucena, M. L. R. S., & Nikolla, E. (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.
    9. Ma, X.‡, Carneiro, J. S.‡, Gu, X. K., Qin, H., Xin, H., Sun, K., & Nikolla, E. (2015). Engineering Complex, Layered Metal Oxides: High-Performance Nickelate Oxide Nanostructures for Oxygen Exchange and Reduction. ACS Catalysis, 5(7), 4013-4019.
    10. Alves, D. R., Carneiro, J. S., Oliveira, I. F., Façanha, F., Santos, A. F., Dariva, C., … & Fortuny, M. (2014). Influence of the salinity on the interfacial properties of a Brazilian crude oil–brine systems. Fuel, 118, 21-26.
    11. Melo Júnior, C. A., Albuquerque, C. E., Carneiro, J. S., Dariva, C., Fortuny, M., Santos, A. F., … & Ramos, A. L. (2010). Solid-acid-catalyzed esterification of oleic acid assisted by microwave heating. Industrial & Engineering Chemistry Research, 49(23), 12135-12139.

Group News

January 2021-

Four new PhD students join the group!  Anu Osibo will work on depolymerization catalysis and Yoseph Guta will study amine adsorbent stability.  Both will be co-advised by Prof. Sievers.  MinGyu Song will study DAC under unconventional conditions, and will be co-advised by Prof. Lively.  Laura Proano will evaluate catalytic sorbents for CO2 capture and conversion in a single, intensified process.

December 2020-

The group welcomes the arrival of new postdoctoral fellow Pranjali Priyadarshini, who recently completed her PhD at the University of Illinois.

October 2020-

We bid farewell to postdoctoral fellow Dharam Kumar and visiting PhD student Wei Zhou.  We welcome the arrival of new postdoctoral Fellow Gabriel Short, who recently completed his PhD in chemistry at the University of Florida.

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