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Showing 1–3 of 3 results
Advanced filters: Author: Ranga Rohit Seemakurthi Clear advanced filters
  • Optimizing devices for electrochemical CO2 reduction requires a comprehensive and quantitative understanding of the microenvironments where the reactions occur. Now, a multiscale modelling approach that explicitly accounts for electrolyte effects at all scales is developed and showcased for the electroreduction of CO2 on silver.

    • Francesca Lorenzutti
    • Ranga Rohit Seemakurthi
    • Sophia Haussener
    Research
    Nature Catalysis
    Volume: 8, P: 905-918
  • Emerged sustainable techniques for nitrogen fixation still lack ammonia yield rate to be practically relevant. Here, the authors demonstrate a laser–induced method to deliver a yield rate of 30.9 µmol s-1 cm−2 at ambient conditions, which is two orders of magnitude higher than other methods.

    • Huize Wang
    • Ranga Rohit Seemakurthi
    • Markus Antonietti
    ResearchOpen Access
    Nature Communications
    Volume: 14, P: 1-7
  • Ni-based CO2 reduction electrocatalysts have been reported to produce multicarbon products up to C6 but with limited selectivity. Here the reaction mechanism of the process is elucidated. Consequently, pulsed potential electrolysis and electrolyte deuteration are respectively employed to enhance the selectivity of branched hydrocarbons and increase the total hydrocarbon Faradaic efficiency to 22%.

    • Yingqing Ou
    • Lu Liu
    • Boon Siang Yeo
    Research
    Nature Catalysis
    Volume: 8, P: 714-727