Now showing items 1-7 of 7

    • Data of bifunctional oxygen electrocatalyst based on Fe, Co, and nitrogen co-doped graphene-coated alumina nanofibers for Zn-air battery air electrode 

      Mooste, Marek; Ahmed, Zubair; Kapitulskis, Pavels; Ivanov, Roman; Treshchalov, Alexey; Piirsoo, Helle-Mai; Kikas, Arvo; Kisand, Vambola; Kukli, Kaupo; Hussainova, Irina; Tammeveski, Kaido (Institute of Chemistry, University of Tartu, Ravila 14a, 50411 Tartu, Estonia, 2024)
      This dataset contains the data presented in the figures of pulbished paper "Bifunctional oxygen electrocatalyst based on Fe, Co, and nitrogen co-doped graphene-coated alumina nanofibers for Zn-air battery air electrode" ...
    • Data of iron, cobalt, and nickel phthalocyanines tri-doped electrospun carbon nanofibre-based catalyst for rechargeable zinc-air battery air electrode 

      Muuli, Kaur; Kumar, Rohit; Mooste, Marek; Gudkova, Viktoria; Treshchalov, Alexey; Piirsoo, Helle-Mai; Kikas, Arvo; Aruväli, Jaan; Kisand, Vambola; Tamm, Aile; Krumme, Andres; Moni, Prabu; Wilhelm, Michaela; Tammeveski, Kaido (Institute of Chemistry, University of Tartu, Ravila 14a, 50411 Tartu, Estonia, 2023)
      This dataset contains the data presented in the figures of pulbished paper "Iron, Cobalt, and Nickel Phthalocyanines Tri-Doped Electro-spun Carbon Nanofibre-Based Catalyst for Rechargeable Zinc-Air Battery Air Electrode" ...
    • Data of one-pot synthesis of Pd nanoparticles supported on carbide-derived carbon for oxygen reduction reaction 

      Lüsi, Madis; Erikson, Heiki; Käärik, Maike; Piirsoo, Helle-Mai; Aruväli, Jaan; Kikas, Arvo; Kisand, Vambola; Leis, Jaan; Kukli, Kaupo; Tammeveski, Kaido (Institute of Chemistry, University of Tartu, Ravila 14a, 50411 Tartu, Estonia, 2024)
      This dataset contains the data presented in the figures of published paper "One-Pot Synthesis of Pd Nanoparticles Supported on Carbide-Derived Carbon for Oxygen Reduction Reaction" published in Nanomaterials 2024, 14, ...
    • Data of oxygen reduction reaction on AgPd nanocatalysts prepared by galvanic exchange 

      Lüsi, Madis; Erikson, Heiki; Piirsoo, Helle-Mai; Aruväli, Jaan; Kikas, Arvo; Kisand, Vambola; Tamm, Aile; Tammeveski, Kaido (Institute of Chemistry, University of Tartu, Ravila 14a, 50411 Tartu, Estonia, 2023)
      This dataset contains the data presented in the figures of published paper "Oxygen reduction reaction on AgPd nanocatalysts prepared by galvanic exchange" published in Applied Surface Science 636 (2023) 157859. ...
    • Data of oxygen reduction reaction on Pd nanoparticles supported on novel mesoporous carbon materials 

      Lüsi, Madis; Erikson, Heiki; Tammeveski, Kaido; Treshchalov, Alexey; Kikas, Arvo; Piirsoo, Helle-Mai; Kisand, Vambola; Tamm, Aile; Aruväli, Jaan; Solla-Gullón, Jose; Feliu, Juan M. (Institute of Chemistry, University of Tartu, Ravila 14a, 50411 Tartu, Estonia, 2021-08-23)
      This dataset contains the data presented in the figures of published paper "Oxygen reduction reaction on Pd nanoparticles supported on novel mesoporous carbon materials" Electrochimica Acta 394 139132 https://doi.org/10. ...
    • Data of oxygen reduction reaction on PdM/C (M = Pb, Sn, Bi) alloy nanocatalysts 

      Lüsi, Madis; Erikson, Heiki; Piirsoo, Helle-Mai; Paiste, Päärn; Aruväli, Jaan; Kikas, Arvo; Kisand, Vambola; Tamm, Aile; Tammeveski, Kaido (Institute of Chemistry, University of Tartu, Ravila 14a, 50411 Tartu, Estonia, 2022)
      This dataset contains the data presented in the figures of published paper "Oxygen reduction reaction on PdM/C (M = Pb, Sn, Bi) alloy nanocatalysts" published in Journal of Electroanalytical Chemistry 917 (2022) 116391. ...
    • Hybrid high-performance oxygen reduction reaction Fe–N–C electrocatalyst for anion exchange membrane fuel cells 

      Ahmed, Zubair; Akula, Srinu; Kozlova, Jekaterina; Piirsoo, Helle-Mai; Kukli, Kaupo; Kikas, Arvo; Kisand, Vambola; Käärik, Maike; Leis, Jaan; Treshchalov, Alexey; Aruväli, Jaan; Tammeveski, Kaido (International Journal of Hydrogen Energy, 2024-03-16)
      Atomically dispersed active sites and hierarchical porosity in Fe–N–C catalyst materials are essential for efficient oxygen reduction reaction (ORR) electrocatalysis and effective mass transport, respectively. However, the ...