This profile is built from public research funding records (CIHR, NSERC and SSHRC) and PubMed. We have not imported them from a McGill University directory, so their courses may be missing. Find their university profile.
Research
Latest papers
Electrochemical C-N Bond Formation from CO2 and Nitrate Using Molecular Catalysis.
Journal of the American Chemical Society · 2026
Oxy-reductive C-N bond formation via pulsed electrolysis.
Nature communications · 2025
Azatriangulene-Based Conductive C═C Linked Covalent Organic Frameworks with Near-Infrared Emission.
Advanced materials (Deerfield Beach, Fla.) · 2024
Latest funding
- $25,000
Electrochemical Conversion of Nitrate and Nitrite Wastes into Ammonia and Urea
NSERC · 2023 · Principal investigator
- $135,000
Electrochemical production of urea via pulsed electrosynthesis
NSERC · 2022 · Co-investigator
- $135,000
CO2 Electroreduction Over Extremely Small Nanoparticles: Opening New Reaction Pathways
NSERC · 2022 · Principal investigator
10 publications.
Electrochemical C-N Bond Formation from CO2 and Nitrate Using Molecular Catalysis.
McKee M, Bhave D, Vangala SPK, Heidarpour H, Daniels J, Weisbarth R, Seifitokaldani A, Kornienko N
Oxy-reductive C-N bond formation via pulsed electrolysis.
Zhang Y, Al-Mahayni H, Aguiar PM, Chartrand D, McKee M, Shamekhi M, Seifitokaldani A, Kornienko N
Azatriangulene-Based Conductive C═C Linked Covalent Organic Frameworks with Near-Infrared Emission.
Hamzehpoor E, Ghamari P, Tao Y, Rafique MG, Zhang Z, Salehi M, Stein RS, Ramos-Sanchez J, Laramée AW, Cosa G, Pellerin C, Seifitokaldani A, Khaliullin RZ, Perepichka DF
Multi-metallic Layered Catalysts for Stable Electrochemical CO2 Reduction to Formate and Formic Acid.
Nguyen TN, Khiarak BN, Xu Z, Farzi A, Sadaf SM, Seifitokaldani A, Dinh CT
Electrokinetic Analyses Uncover the Rate-Determining Step of Biomass-Derived Monosaccharide Electroreduction on Copper.
Ma G, Al-Mahayni H, Jiang N, Song D, Qiao B, Xu Z, Seifitokaldani A, Zhao S, Liang Z
Impact of Temperature an Order of Magnitude Larger Than Electrical Potential in Lignin Electrolysis with Nickel.
Carkner A, Tageldin I, Han J, Seifitokaldani A, Kopyscinski J
High-Density Cobalt Single-Atom Catalysts for Enhanced Oxygen Evolution Reaction.
Kumar P, Kannimuthu K, Zeraati AS, Roy S, Wang X, Wang X, Samanta S, Miller KA, Molina M, Trivedi D, Abed J, Campos Mata MA, Al-Mahayni H, Baltrusaitis J, Shimizu G, Wu YA, Seifitokaldani A, Sargent EH, Ajayan PM, Hu J, Kibria MG
Electroreduction of Carbon Dioxide to Acetate using Heterogenized Hydrophilic Manganese Porphyrins.
Abdinejad M, Yuan T, Tang K, Duangdangchote S, Farzi A, Iglesias van Montfort HP, Li M, Middelkoop J, Wolff M, Seifitokaldani A, Voznyy O, Burdyny T
CO2 Electrolysis via Surface-Engineering Electrografted Pyridines on Silver Catalysts.
Abdinejad M, Irtem E, Farzi A, Sassenburg M, Subramanian S, Iglesias van Montfort HP, Ripepi D, Li M, Middelkoop J, Seifitokaldani A, Burdyny T
Boride-derived oxygen-evolution catalysts.
Wang N, Xu A, Ou P, Hung SF, Ozden A, Lu YR, Abed J, Wang Z, Yan Y, Sun MJ, Xia Y, Han M, Han J, Yao K, Wu FY, Chen PH, Vomiero A, Seifitokaldani A, Sun X, Sinton D, Liu Y, Sargent EH, Liang H
Electrochemical Conversion of Nitrate and Nitrite Wastes into Ammonia and Urea
Principal investigators: Seifitokaldani, Ali A
Keywords: Ammonia and Urea; CO2 Electroreduction; Density Functional Theory; Electrocatalysis; Flow Cell Electrolyzer; In-situ Electrochemical Spectroscopy; Materials Characterization; Materials Synthesis; Nitrate and Nitrite Reduction; Reaction Mechanism
Electrochemical production of urea via pulsed electrosynthesis
Principal investigators: Kornienko, Nikolay NO
Keywords: catalyst design; co2 reduction; dft modelling; electrification of industry; electrocatalysis; electrode and reactor engineering; energy conversion; in situ spectroscopy
CO2 Electroreduction Over Extremely Small Nanoparticles: Opening New Reaction Pathways
Principal investigators: Seifitokaldani, Ali A
Keywords: co2 electroreduction; density functional theory; electrocatalysis; life cycle assessment; materials characterizan; materials synthesis; nanomaterials; reaction mechanism; scaled up system; techno-economic analysis
CO2 reduction, H2 production, and biomass upgrading through one single electrochemical system: from bench to commercialization
Principal investigators: Seifitokaldani, Ali A
Keywords: Biowastes upgrading; CO2 Electroreduction; Electrocatalysis; H2 Production; Life Cycle Assessment; Materials Characterization; Materials Synthesis; Reaction Mechanism; Scaled up system; Techno-economic analysis
Viable Electrochemical System for Sustainable Fuel and Chemical Production
Principal investigators: Seifitokaldani, Ali
Keywords: carbon dioxide reduction reaction; biomass wastes valorization; electrocatalysis; electrochemical system; nano-materials synthesis; in-situ spectroscopy; density functional theory computation; machine learning for materials discovery; hydroxymethylfurfural oxidation to furandicarboxylic acid; black liquor and lignin oxidation
Viable Electrochemical System for Sustainable Fuel and Chemical Production
Principal investigators: Seifitokaldani, Ali
Electrocatalysis for Renewable Energy Production and Conversion
Principal investigators: Seifitokaldani, Ali
Electrocatalysis for Renewable Energy Production and Conversion
Principal investigators: Seifitokaldani, Ali
Keywords: Electrocatalysis; Viable Electrochemical System; ; CO2 Reduction Reaction; Biomass Wastes Valorization; ; Density Functional Theory Computation; ; Operando Spectroscopy; Materials Synthesis
From CIHR, NSERC and SSHRC funding decisions: CIHR since 2008, NSERC since 1991 and SSHRC since 1998, including their latest published competition results.
Frequent collaborators
- Gonzalo Cosa and Ali Seifitokaldani: 1 shared paper
- Ali Seifitokaldani and Jan Kopyscinski: 1 shared paper
- Ali Seifitokaldani and Jinguang Hu: 1 shared paper
- Chemical Engineering
- Chemical and Petroleum Engineering
- Other
Co-authors at McGill University, colored by department. Thicker lines mean more shared papers; select anyone to open their profile and their own map.
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