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Braun, M., Santana, C. S., Garcia, A. C., & Andronescu, C. (2023). From waste to value -- Glycerol electrooxidation for energy conversion and chemical production. Current opinion in green and sustainable chemistry, 41(100829), 100829. https://doi.org/10.1016/J.COGSC.2023.100829
Broersen, P. J. L., de Groot, T., Bruggeman, D. F., Caarls, E. S., Trindell, J. A., Anastasiadou, D., Figueiredo, M. C., Rothenberg, G., & Garcia, A. C. (in press). Enhancing Electrocatalytic Synthesis of Glycine with CuPb1ML Electrode Synthesized via Pb UPD. ChemCatChem. https://doi.org/10.1002/cctc.202301370
Bruggeman, D. F., von Quadt, C. G., Santana, C. S., & Garcia, A. C. (2023). Enhancing electrocarboxylation reactions efficiency by cathode material selection. Current Research in Green and Sustainable Chemistry, 7, Article 100380. https://doi.org/10.1016/j.crgsc.2023.100380
Deacon-Price, C., da Silva, A. H. M., Santana, C. S., Koper, M. T. M., & Garcia, A. C. (2023). Solvent Effect on Electrochemical CO2 Reduction Reaction on Nanostructured Copper Electrodes. The Journal of Physical Chemistry. C, 127(29), 14518-14527. https://doi.org/10.1021/acs.jpcc.3c03257
Sidney Santana, C., Gjonaj, E., & Garcia, A. C. (2023). Effect of Iron Impurities on the Electrochemical Oxidation of Glycerol on Ni(OH)2/NiOOH Electrodes. ChemElectroChem. https://doi.org/10.1002/celc.202300570
2022
Bhardwaj, S. K., Knaus, T., Garcia, A., Yan, N., & Mutti, F. G. (2022). Bacterial Peroxidase on Electrochemically Reduced Graphene Oxide for Highly Sensitive H2O2 Detection. ChemBioChem, 23(17), Article e202200346. https://doi.org/10.1002/cbic.202200346[details]
Hersbach, T. J. P., Garcia, A. C., Kroll, T., Sokaras, D., Koper, M. T. M., & Garcia-Esparza, A. T. (2021). Base-Accelerated Degradation of Nanosized Platinum Electrocatalysts. ACS Catalysis, 11(15), 9904-9915. https://doi.org/10.1021/acscatal.1c02468[details]
2020
Garcia, A. C., Sánchez-Martínez, C., Bakker, I., & Goetheer, E. (2020). Sustainable Electrochemical Production of Tartaric Acid. ACS Sustainable Chemistry & Engineering, 8(28), 10454–10460. https://doi.org/10.1021/acssuschemeng.0c02493[details]
Hersbach, T. J. P., Ye, C., Garcia, A. C., & Koper, M. T. M. (2020). Tailoring the Electrocatalytic Activity and Selectivity of Pt(111) through Cathodic Corrosion. ACS Catalysis, 10(24), 15104–15113. https://doi.org/10.1021/acscatal.0c04016[details]
Garcia, A. C. (2019). Electroreduction of CO2 to CO Paired with 1,2-Propanediol Oxidation to Lactic Acid. Toward an Economically Feasible System. Industrial & Engineering Chemistry Research, 58.
Garcia, A. C. (2019). Enhancement of Oxygen Evolution Activity of Nickel Oxyhydroxide by Electrolyte Alkali Cations. Angewandte Chemie, International Edition, 58.
Garcia, A. C. (2018). Impact of the AuAg NPs Composition on Their Structure and Properties: A Theoretical and Experimental Investigation. The Journal of Physical Chemistry. C, 118(49).
Garcia, A. C. (2017). Influence of the thickness and roughness of polyaniline coatings on corrosion protection of AA7075 aluminum alloy. Electrochimica Acta, 240.
Garcia, A. C. (2017). PtAg/MnOx/C as a promising electrocatalyst for glycerol electro-oxidationin alkaline medium. Journal of Electroanalytical Chemistry, 793(15).
Garcia, A. C. (2016). How do random superficial defects influence the electro-oxidation of glycerol on Pt(111) surfaces? Physical Chemistry Chemical Physics, 18. https://doi.org/10.1039/C6CP04768H
Garcia, A. C. (2016). Strong Impact of Platinum Surface Structure on Primary and Secondary Alcohol Oxidation during Electro-Oxidation of Glycerol. ACS Catalysis, 6(7). https://doi.org/10.1021/acscatal.6b00709
Garcia, A. C. (2015). Electronic effect in intermetallic electrocatalysts with low susceptibility to CO poisoning during hydrogen oxidation. International Journal of Hydrogen Energy, 40. https://doi.org/10.1016/j.ijhydene.2015.06.145
Garcia, A. C. (2015). New insight into the formation mechanism of the Ag, Au and AgAu nanoparticles in aqueous alkaline media: alkoxides from alcohols, aldehydes and ketones as the universal reducing agent. Physical Chemistry Chemical Physics, 17. https://doi.org/10.1039/C5CP02155C
Garcia, A. C. (2015). Promotional Effect of Ag on the Catalytic Activity of Au for Glycerol Electrooxidation in Alkaline Medium. ChemElectroChem, 2. https://doi.org/10.1002/celc.201500022
Bott-Neto, J. L., Garcia, A. C., Oliveira, V. L., de Souza, N. E., & Tremiliosi-Filho, G. (2014). Au/C catalysts prepared by a green method towards C3 alcohol electrooxidation: A cyclic voltammetry and in situ FTIR spectroscopy study. Journal of Electroanalytical Chemistry, 735, 57-62. https://doi.org/10.1016/j.jelechem.2014.10.010
Garcia, A. C. (2014). Eco-friendly synthesis of bimetallic AuAg nanoparticles. New Journal of Chemistry, 38. https://doi.org/10.1039/c4nj00041b
Garcia, A. C. (2014). Influence of silver on the glycerol electro-oxidation over AuAg/C catalysts in alkaline medium: a cyclic voltammetry and in situ FTIR spectroscopy study. Electrochimica Acta, 144. https://doi.org/10.1016/j.electacta.2014.08.035
Garcia, A. C. (2014). NiMnOx/C: A Non-noble Ethanol-Tolerant Catalyst for Oxygen Reduction in Alkaline Exchange Membrane DEFC. Electrocatalysis, 5. https://doi.org/10.1007/s12678-013-0162-1
Garcia, A. C. (2013). Investigation of the oxygen reduction reaction on Pt-WC/C electrocatalysts in alkaline media. Electrochimica Acta, 106. https://doi.org/10.1016/j.electacta.2013.05.128
Garcia, A. C. (2012). Electrocatalytic performance of environmentally friendly synthesized gold nanoparticles towards the borohydride electro-oxidation reaction. Journal of Power Sources, 218. https://doi.org/10.1016/j.jpowsour.2012.06.064
Garcia, A. C. (2012). Straightforward Synthesis of Carbon-Supported Ag Nanoparticles and Their Application for the Oxygen Reduction Reaction. Electrocatalysis, 3. https://doi.org/10.1007/s12678-012-0096-z
Garcia, A. C. (2011). Evaluation of Several Carbon-Supported Nanostructured Ni-Doped Manganese Oxide Materials for the Electrochemical Reduction of Oxygen. Journal of the Electrochemical Society, 158(3). https://doi.org/10.1149/1.3528439
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